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跨平台多词典聚合版 支持桌面翻译与划词工具,功能强大

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基于crimx/ext-saladict,聚合了 N 多词典的桌面翻译与划词工具,功能强大,支持 Windows 、 Mac 和 Linux。


功能

支持crimx/ext-saladict的大部分功能
  • 多词典切换
  • 多种划词方式
  • 历史记录
  • 红心保存生词
  • 剪切板监听(复制翻译)
  • 等等...






后续计划

  • OCR
  • 自定义分词 (驼峰拆分)
  • 变量命名
  • ...


安装

这里去下载最新版本,或者下面的指定系统版本。


Mac

下载 .dmg


Window

下载 .exe


Linux

'Debian / Ubuntu' 使用 .deb 下载


蓝奏云备份下载

https://zenghongtu.lanzous.com/b044io4qb 密码:h2bj

贰笔中文写作助手(论文小助手) V1.1 绿色版

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复制想要降重的文字粘贴,点击“开始降重”即可
(默认)普通降重模式:降重效果一般,还原度高,错误少
高降重模式:降重效果好,但错误率较高。


提供七种降重接口,并且接口都支持高降重模式,是目前市面上最多接口的智能化降重软件。

降重完毕后还可以进行“错字纠正”,或者直接输入一段文字使用“错字纠正”功能。


双击指定的推荐词语便可直接替换掉错误的词语

降重完毕后还可以让女声朗读,选择任意文字,鼠标右键选择“语音朗读”便可以自动朗读。

降重完毕后,选择想要二次修改的词语,鼠标右键选择“词语替换”,


提供更多近义词选项,选择满意的近义词,鼠标左键双击便可替换到原文。

当你缺乏表达能力的时候,看看大家都在想什么,提供了当前最强的互联网大数据实时库
也就是“智能联想”功能。


选择文字鼠标右键选择“智能联想” ,并且鼠标左键双击直接替换。

当你缺乏想法和思路的时候,提供给你一段完整的句型参考,也就是“智能造句”功能。


选择文字鼠标右键选择“智能造句” ,并且鼠标左键双击直接替换

选择任意文字,鼠标右键点击“片段查重”,集合了百度、搜狗、360等三家搜索引擎,
可快速得到互联网资源的对比结果。
在最上方的文本框里面选择部分文字,鼠标右键点击论文搜索,提供全网资源搜索,
可重复点击“继续搜索”来搜到自己想要的内容,直接双击就能打开相关文章的资源地址。
直接用QQ或微信等软件截图某段文字,直接粘贴就能提取图片中所包含的文字。
选择任意文字,点击菜单选择“模拟查重算法检测”,需要原文和修文对比并提供修改建议,
目前处于实验阶段,前期测试经过修改后的段落通过了最严格的维普查重,后续仍需要优化改进。


地址:https://lanzous.com/ibbj46b

小学加减法出题器 1.1绿色版

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C#版的加减法自动出题器

打开就可以设置是加法还是减法,设置取值范围
开始出题后,不能修改设置,只能重进。





可以点击确定答案或者按回车键提交答案





每答一题就可以看到数据


使用:让小孩子做xx个题,要求正确率不低于xx。

这样,你一边玩手机都可以,直接看答题数和正确率。


关于小孩子会不会调用win10的计算器..暂时没写拦截,你可以假装监督他(其实我估计能用到这个软件的小朋友应该也不太可能会找到win10的计算器..)
本帖包含的部分附件只能 访问 社区查看

图像转卡通素描效果 Prima Cartoonizer 1.1.1 绿色激活版

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现在,您可以更快,更准确地将所有图片和图像转换为卡通效果。您可以将大型或高质量的照片转换为卡通效果最好的照片。此外,即使在转换之前或之后,您也可以编辑照片并进行多项调整。添加许多项目,裁剪照片,调整大小并调整亮度和对比度。
快速安装后,系统将提示您添加图片以开始使用,该事件还带来了应用程序的效果,功能和选项。因此,在行驶方面,您可以使用小菜单来自定义亮度,对比度和RGB。该应用程序还具有缩放功能,在调整这些参数时可以派上用场。
该程序是一款傻瓜式的卡通图像生成工具,只要导入图片轻松点击即可生成完美的卡通图像。此外程序还内置了19种卡通效果,还有很多纹理背景素材、边框、贴图等素材,而所有的操作就是点选即可。


Prima Cartoonizer功能概述
您甚至可以使用卡通化的照片进行所有类型的调整。
提供多种效果,使您的图片更令人着迷。
您可以在几秒钟内方便地将照片转换成卡通。
这是一款非常简单的软件,其主要主题是将图像变成卡通。
它使用户能够比正常过程更快地将照片秘密转换为卡通。
借助裁切功能,您可以删除图像中不需要的部分。
您可以编辑图像并调整亮度和对比度…等
不需要其他独立程序或软件;它本身完成所有功能。
转换后的卡通不包含任何水印或徽标。(仅限付费版本)
您无需保存照片即可打印。您可以直接在软件中进行操作。
提供调整大小功能,您可以在转换之前或之后调整照片的大小。
不同的糖果可以提高整体乐趣和欢乐感,从而为您的卡通画增添色彩。


蓝奏云下载:https://5ilr.lanzous.com/ibbj8xc

图片文件合并工具(让rar压缩包隐藏在图片中)

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一款可以将图片和压缩包合并的工具,合并后也算是一种隐藏吧,需要的千万不要错过了/
上面的test.jpg是合成后的文件,但还是能够正常打开图片
扩展名修改为.rar ,则可以看到压缩包的内容












本帖包含的部分附件只能 访问 社区查看

SolidWorks 2020 精简激活版

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SolidWorks 2020是全球专业的计算机三维机械设计软件,3D CAD 设计软件、分析软件和产品数据管理软件。具有系列零件设计表,水射流切割技术等,广泛应用于工程制图建模、机械模型设计、工业设备零件、钣金与焊接设计等行业领域。这里带来的是精简激活版,非常很好用的版本,免去了激活的步骤,也不用下载原版那么大的文件了/


精简版特点

by 9zhmke
2020.04.11
制作说明:
1、 安装本软件之前请务必安装好常用VC包,不清楚需要安装哪些VC包的请自行百度;
2、 本软件仅能用于64位的Windows10,在Win7下会报.net错误…需要的人多可以解决;
3、 因授权许可以服务方式存在,本软件安装环境必须是未安装过SOLIDWORKS的计算机上方可成功,否则用户需先删除旧的许可服务…需要的人多可以解决,建议安装在新系统;
4、 此版本只安装了前三项和最后一项,你所需要的功能不一定有….这也是可以解决的;
5、 本软件是绿色软件,可以直接用压缩软件解压出来运行(必须原C盘安装目录)
关于安装
1、运行自解压程序开始解压;
2、安装完成后产生图标,请双击SW进入;
3、会弹出一个MBD的出错信息,确认即可;
4、接受许可协议,搞定!
系统要求
SolidWorks2020 官方只有64位版,无32位版;
64位 Windows 7 (KB4019990) , Windows 10 v1803 或更高版;


SolidWorks 2020 简体中文绿色精简版 ot 9zhmke(2.7G)
https://pan.baidu.com/s/1tMSEQuctdQvzflVmNLXshg





需要完整版的下载地址:http://bbs.sdbeta.com/read-htm-tid-571671.html

Tensor Research Encom ModelVision 17.0

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Tensor Research是ModelVision的开发者,ModelVision是一种交互式的势场建模,反演,处理和可视化解释系统。现在,我们提供此受信任应用程序的全面支持,销售和开发。
Tensor Research为您提供了一支经验丰富的地球物理学家团队,拥有100多年的软件工程和理论研究经验,我们可以将其应用于您的特定问题。
我们专注于潜在领域的研究,涵盖正向和反向建模,磁和重力数据的过滤和分析。我们可以帮助您从最新一代的仪器中获得更多信息,包括全张量重力和磁系统,横翼梯度,磁通门和总磁场仪器。
我们开发与桌面应用程序集成的自定义和通用解决方案,并增强您在现有软件,硬件和运营调查方面的投资。

ModelVision 17.0为每个3D潜在现场问题提供了解决方案。 无论您从事矿物勘探,钻石勘探,石油勘探,环境地球物理,工程,未爆弹药还是地下危险评估,ModelVision均可为您提供完整的解释环境。
由地球物理解释器为地球物理解释器设计的ModelVision是目前可用的最先进的基于通用模型的解释系统。

我们可以为您提供的服务包括:
查看您现有的软件投资
评估企业技能
提供潜在领域解释方面的培训
提供定制软件工程服务
为特定的勘探或开发应用开发理论解决方案
定制现有的内部开发
提供现有软件平台的软件扩展。
给我们打电话,看看我们如何为您的勘探和开发目标提供帮助。
新特性
结果磁化解构
反转约束现在保存在会话中
3D向量(Bx,By,Bz)标识源位置
截面和地图的EGB注册文件
状态栏中最近的线路标识
目标向导完善
整体横截面样式更改
3D钻孔矢量
其他改进和修复
英语语言

总势场建模应用


ModelVision为每个3D潜在现场问题提供了解决方案。无论您从事矿物勘探,钻石勘探,石油勘探,环境地球物理,工程,未爆弹药还是地下危险评估,ModelVision均可为您提供完整的解释环境。

由地球物理解释器为地球物理解释器设计的ModelVision是目前可用的最先进的基于通用模型的解释系统。

不只是建模

ModelVision提供了广泛的导入和导出格式,以及用于网格化,过滤和数值处理的实用程序。 ModelVision中的测量模拟工具可确保用户可以计划和预测重力和磁场测量的场指标,包括所有张量组件。用户还可以从数字地形网格创建空中勘测,或者在模拟的地质模型中创建一组合成钻孔。

前沿技术

在过去的25年中,ModelVision研究团队应对行业挑战,实施了新功能和改进功能,并确保与各种行业标准软件产品集成。我们致力于从ModelVision应用程序的持续开发中继续向我们的客户转移利益。
操作系统:
Windows 7 / 8.x / 10.x

联系 8020169@qq.com

IMST Empire XPU 8.0

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IMST Empire XPU 8.0是领先的3D电磁场(EM)设计套件。这一独特的XPU技术为天线、微波电路、组件、芯片设计、医疗设备等广泛应用提供优越性能保证。它是一款基于FDTD算法的3D全波电磁仿真软件,覆盖领域极其广泛,从半导体封装到飞机内部的电磁波传播,包括天线设计、射频电路、电大尺寸结构仿真、电磁兼容/电磁干扰、微波射频元器件设计仿真等方面。IMST Empire XPU由卓越工程技术开发的IMST EMPIRE XPU是领先的3D电磁场模拟器之一。 它基于强大的有限差分时域方法(FDTD),该方法已成为RF和微波组件以及天线设计的工业标准。 由于EMPIRE XPU具有独特的自适应动态代码生成功能,因此它具有当今已知最快的仿真引擎。 有了这种高度加速的内核,全波电磁仿真问题现在可以在几分钟之内解决,而这在几年前就已经花费了几天。
电磁场仿真已经成为开发和优化高科技产品的基础。这些设计旨在提供卓越的性能,同时确保暴露在那些电磁场中的人员的安全。为了理解复杂的场景,我们将物理模型与模拟人体或人体靠近产品的身体部位结合使用;我们的技能,先进的计算方法和工具可以产生准确的仿真结果,从而减少了开发时间并完全消除了某些步骤。
我们提供 :
计算用于开发新产品的电磁场,例如在汽车工业,动力传输工程,医疗技术,RFID,工业测量技术以及许多其他领域。
计算电场,磁场和电磁场,以评估与用户干扰有关的SAR和电流密度,例如移动电话,RFID,电阻焊接系统,无线电力传输等。…
使用基于计算机的仿真和计算方法的培训和咨询
由IMST开发的EMPIRE XPU™是市场上最快的EM仿真软件程序之一,可以快速而准确地仿真大型电气结构。


联系 8020169@qq.com

VMware vCenter Server v7.0 (x64) ISO 完美密匙激活

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VMware vCenter Server v7.0 (x64) ISO | 5.43 Gb

vCenter Server: Simplified and Efficient Server Management. Gain centralized visibility, simplified and efficient management at scale, and extensibility across the hybrid cloud—all from a single console. VMware vCenter Server is advanced server management software that provides a centralized platform for controlling your VMware vSphere environments, allowing you to automate and deliver a virtual infrastructure across the hybrid cloud with confidence.

VMware vCenter Server Features

Simple Deployment

Quickly deploy vCenter Server as a pre-packaged, optimized, and easy-to-maintain virtual appliance. Integration of vSphere Update Manager into vCenter Server Appliance makes patching and upgrading fast and easy. RESTful APIs allow for the easily repeatable deployment of vCenter Server Appliance from a template, speeding up deployment times as well as reducing human error.

Extensibility and Scalability Across Hybrid Cloud
Seamlessly extend your on-premises environment to vSphere-based public clouds, such as VMware Cloud on AWS, no matter which version of vCenter Server you are running. Large-scale management is now improved: Manage up to 2,000 hosts and 35,000 virtual machines with a single vCenter Server instance.

Centralized Control and Visibility
Administer your entire vSphere infrastructure from a single location. The HTML 5-based vSphere Client lets you manage the essential functions of vSphere from any browser, offering more responsiveness and usability than ever before. Assign users to custom roles, search vCenter Server inventory, or provision new virtual machines with the click of a button.

Improved Management
Use powerful tools to simplify management and extend your control. Use web services APIs to achieve cost-effective and flexible integration with existing systems management products. And use different VMware vCenter Server versions while allowing cross-vCenter, mixed-version provisioning operations, such as vMotion, Full Clone, and cold migrate.

Proactive Optimization
Allocate and optimize resources for maximum efficiency with our server management software. Manage up to 70,000 virtual machines and 5,000 hosts across 15 vCenter Server instances. Use vSphere HA and DRS clusters to support up to 64 hosts and 8,000 virtual machines. Replicate roles, permissions, and licenses across the infrastructure so you can simultaneously log in, view, and search the inventories of all vCenter Servers. Link multiple vCenter Server Appliances and increase visibility without using costly load balancers.

Native Elements
Protect the vCenter Server Appliance and related services with native high availability (HA) and a recovery time objective of less than 10 minutes. vSphere provides native active-passive HA capability, certified for vCenter Server Appliance.

Back up your appliance to a set of files while vCenter Server is still up and running with native backup and restore. Restore by simply pointing a fresh appliance to the backup location and files will be downloaded to the new vCenter Server Appliance. No third-party products required.

Schedule your vCenter Server Appliance backups and control the number of backups retained via the native backup scheduler.

Plug-in Extensibility
vSphere Client Plug-ins from VMware partners allow IT admins to manage third-party elements in their data center directly from vCenter Server. Our server management software has the largest partner ecosystem in the industry, with our open vSphere Client Plug-in SDK. As a result, vCenter Server customers can implement back-up, data protection, server management, network management and security management, directly from vCenter Server.

VMware launched the vSphere Client Plug-in Certification Program in 2016 to ensure a better end-user experience for customers. Certified Plug-ins deliver optimal performance, better security model, client isolation against failures in one plug-in, and enhanced vCenter Server Appliance scalability. Customers will be able to distinguish certified vSphere Client Plug-ins because only certified Plug-ins will carry the "VMware-ready" logo.

Certified vSphere Web Client plug-ins:
- Dell EMC OpenManagement Integration for VMware vCenter
- Huawei Technologies Storage NGC (Flex and HTML 5)
- IBM Storage Enhancements for vSphere
- IBM Spectrum Protect vSphere Web Client
- Infinidat Powertools (HTML 5)
- Lenovo XClarity Integrator for VMware vCenter
- NimbleStorage vSphere Web Client
- StorMagic

VMWARE.VCENTER.SERVER.V7.0-MAGNiTUDE

Home Page - https://www.vmware.com/

(回复可见内容)


======================================================================
                 VMWARE vCenter Server Appliance 7.0
======================================================================
VMware-VCSA-all-x.y.z-adcdefg.iso (DVD 映像)。注意: 该软件包允许您安装、升级或还原 VMware vCenter Server Appliance,或者将适用于 Windows 的 vCenter Server 迁移到 vCenter Server Appliance。---------------------------
文件和目录
---------------------------

/vcsa                   vCenter Server Appliance 数据文件

/vcsa-ui-installer      vCenter Server Appliance GUI 安装程序

/vcsa-cli-installer     vCenter Server Appliance CLI 安装程序

/migration-assistant    vCenter Server Migration Assistant


=================================
安装/升级/迁移/还原
=================================

此部分包含有关如何通过使用 GUI 安装程序或者通过使用 CLI 安装程序安装、升级或迁移以及如何使用 GUI 安装程序进行还原的基本信息。

可以通过使用以下安装程序,在运行 ESXi 6.5 或更高版本的主机上或者在 VCenter Server 6.5 或更高版本实例上部署 vCenter Server Appliance:
a) GUI 安装程序,或者
b) CLI 安装程序。在部署期间,两种方法均收集用户输入,运行验证,并部署 vCenter Server Appliance。-------------
GUI 安装程序
-------------

GUI 安装程序将系统地指导您在 Windows、Linux 或 Mac 上进行安装、升级、迁移或还原。*** Windows ***

打开 Windows 资源管理器,在 vCenter Server Appliance 安装目录中,导航到 vcsa-ui-installer\win32 文件夹。1) 双击 installer.exe 文件,或
2) 在命令行中,键入 installer。系统将会引导您完成部署过程。*** Mac ***

在 Mac 上,vcsa-deploy 文件位于 vcsa-ui-installer/mac 文件夹中。1) 按住 Ctrl 并单击 Installer 应用程序,或者右键单击它,然后从菜单中选择“打开”。如果看到关于“开发者身份不明”的警告弹出框,请单击“打开”或

2) 在终端中,键入 open Installer.app。*** Linux ***

在 Linux 上,vcsa-deploy 文件位于 vcsa-ui-installer/lin64 文件夹中。1) 双击 installer 文件,或
2) 在终端中,键入 ./installer。----------------------
CLI 安装程序
----------------------

可以运行 CLI 安装程序以便在 Windows、Linux 或 Mac 上进行安装、升级或迁移。*** Windows ***

打开 Windows 资源管理器,在 vCenter Server Appliance 安装目录中,导航到 vcsa-cli-installer\templates 文件夹。打开 vcsa-cli-installer\templates 目录。可以看到几个常见设置的示例文件。您可以创建新的 .json 文件或使用适合您需求的所有输入对现有模板进行自定义。有了要用于部署 vCenter Server Appliance 的模板文件后,在命令行终端中导航到 vcsa-cli-installer 内的 win32 文件夹,然后运行 vcsa-deploy {install|upgrade|migrate}
..\templates\{模板 json 文件的名称}.json。此命令将启动安装,您可以看到用户友好的状态消息,通知您相关进度并让您了解是否有任何操作失败。*** Mac/Linux ***

该过程与针对 Windows 的过程非常相似。使用模板文件执行操作,与在 Windows 上执行操作的方式相同。唯一的区别是 vcsa-deploy 文件位于不同的文件夹中:

在 Mac 上,vcsa-deploy 文件位于 vcsa-cli-installer/mac 中。在 Linux 上,vcsa-deploy 文件位于 vcsa-cli-installer/lin64 中。--------------------------------------------------
从 vCenter Server Windows 迁移到 Appliance
--------------------------------------------------

VMware Migration Assistant 有助于简化从在 Windows 上运行的
vCenter Server 到 vCenter Server Appliance 的迁移过程。
您可以使用 GUI 安装程序执行迁移,或使用 CLI 安装程序执行无人参与迁移。将 Migration Assistant 交付包,即整个目录 /migration-assistant,复制到 vCenter Server Windows 系统,然后双击可执行文件 VMware-Migration-Assistant.exe 并提供所需输入。----------------
详细信息
----------------
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VMware vRealize Suite v2019 (x64) ISO 授权激活密匙

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VMware vRealize Suite v2019 (x64) ISO | 8.9 Gb

VMware vRealize Suite is a multicloud cloud management solution providing IT organizations a modern platform for infrastructure automation, consistent operations, and governance based on DevOps and ML principles.
VMware vRealize Suite是一种多云云管理解决方案,可为IT组织提供基于DevOps和ML原理的基础架构自动化,一致的操作和治理的现代化平台。
What's Included in vRealize Suite

vRealize Automation

A modern infrastructure automation platform that transforms IT service delivery by automating IT processes, enabling self-service provisioning, delivery and lifecycle management of infrastructure and applications with security and governance.

vRealize Operations
Powered by ML, self-driving operations capabilities to optimize, plan and scale multicloud and HCI deployments, as well as monitoring multicloud and modern Kubernetes infrastructure environments.

vRealize Log Insight
Heterogeneous and highly scalable log management for deep operational visibility and faster troubleshooting across physical, virtual, and cloud environments.

vRealize Suite Lifecycle Manager
Lifecycle and infrastructure management for the vRealize Suite, accelerating time to deploy and upgrade, enhancing the stability of the multicloud environment, and improving end user productivity.

VMWARE.VREALIZE.SUITE.V2019-MAGNiTUDE

Home Page - https://www.vmware.com/

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MathWorks MATLAB R2020a v9.8.0.1323502 mac

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MathWorks MATLAB R2020a v9.8.0.1323502 macOS | 16.9 GB

Millions of engineers and scientists worldwide use MATLAB to analyze and design the systems and products transforming our world. MATLAB is in automobile active safety systems, interplanetary spacecraft, health monitoring devices, smart power grids, and LTE cellular networks. It is used for machine learning, signal processing, image processing, computer vision, communications, computational finance, control design, robotics, and much more.

Math. Graphics. Programming.
The MATLAB platform is optimized for solving engineering and scientific problems. The matrix-based MATLAB language is the world’s most natural way to express computational mathematics. Built-in graphics make it easy to visualize and gain insights from data. A vast library of prebuilt toolboxes lets you get started right away with algorithms essential to your domain. The desktop environment invites experimentation, exploration, and discovery. These MATLAB tools and capabilities are all rigorously tested and designed to work together.

Scale. Integrate. Deploy.
MATLAB helps you take your ideas beyond the desktop. You can run your analyses on larger data sets and scale up to clusters and clouds. MATLAB code can be integrated with other languages, enabling you to deploy algorithms and applications within web, enterprise, and production systems.

Key Features
  • High-level language for scientific and engineering computing
  • Desktop environment tuned for iterative exploration, design, and problem-solving
  • Graphics for visualizing data and tools for creating custom plots
  • Apps for curve fitting, data classification, signal analysis, and many other domain-specific tasks
  • Add-on toolboxes for a wide range of engineering and scientific applications
  • Tools for building applications with custom user interfaces
  • Interfaces to C/C++, Java®, .NET, Python®, SQL, Hadoop®, and Microsoft® Excel®
  • Royalty-free deployment options for sharing MATLAB programs with end users

Why MATLAB?
MATLAB is the easiest and most productive software for engineers and scientists. Whether you’re analyzing data, developing algorithms, or creating models, MATLAB provides an environment that invites exploration and discovery. It combines a high-level language with a desktop environment tuned for iterative engineering and scientific workflows.

MATLAB Speaks Math
The matrix-based MATLAB language is the world’s most natural way to express computational mathematics. MATLAB supports both numeric and symbolic calculations. Linear algebra in MATLAB looks like linear algebra in a textbook; symbolic calculations look like the equations you write on paper. This makes it straightforward to capture the mathematics behind your ideas, which means your code is easier to write, easier to read and understand, and easier to maintain.

You can trust the results of your computations. MATLAB, which has strong roots in the numerical analysis research community, is known for its impeccable numerics. A MathWorks team of 350 engineers continuously verifies quality by running millions of tests on the MATLAB code base every day.

MATLAB does the hard work to ensure your code runs quickly. Math operations are distributed across multiple cores on your computer, library calls are heavily optimized, and all code is just-in-time compiled. You can run your algorithms in parallel by changing for-loops into parallel for-loops or by changing standard arrays into GPU or distributed arrays. Run parallel algorithms in infinitely scalable public or private clouds with no code changes.

The MATLAB language also provides features of traditional programming languages, including flow control, error handling, object-oriented programming, unit testing, and source control integration.

MATLAB Is Designed for Engineers and Scientists
MATLAB provides a desktop environment tuned for iterative engineering and scientific workflows. Integrated tools support simultaneous exploration of data and programs, letting you evaluate more ideas in less time.

  • You can interactively preview, select, and preprocess the data you want to import.
  • An extensive set of built-in math functions supports your engineering and scientific analysis.
  • 2D and 3D plotting functions enable you to visualize and understand your data and communicate results.
  • MATLAB apps allow you to perform common engineering tasks without having to program. Visualize how different algorithms work with your data, and iterate until you’ve got the results you want.
  • The integrated editing and debugging tools let you quickly explore multiple options, refine your analysis, and iterate to an optimal solution.
  • You can capture your work as sharable, interactive narratives.

Comprehensive, professional documentation written by engineers and scientists is always at your fingertips to keep you productive. Reliable, real-time technical support staff answers your questions quickly. And you can tap into the knowledge and experience of over 100,000 community members and MathWorks engineers on MATLAB Central, an open exchange for MATLAB and Simulink® users.

MATLAB and add-on toolboxes are integrated with each other and designed to work together. They offer professionally developed, rigorously tested, field-hardened, and fully documented functionality specifically for scientific and engineering applications

MATLAB Integrates Workflows
Major engineering and scientific challenges require broad coordination to take ideas to implementation. Every handoff along the way adds errors and delays.

MATLAB automates the entire path from research through production. You can:
  • Build and package custom MATLAB apps and toolboxes to share with other MATLAB users.
  • Create standalone executables to share with others who do not have MATLAB.
  • Integrate with C/C++, Java, .NET, and Python. Call those languages directly from MATLAB, or package MATLAB algorithms and applications for deployment within web, enterprise, and production systems.
  • Convert MATLAB algorithms to C, HDL, and PLC code to run on embedded devices.
  • Deploy MATLAB code to run on production Hadoop systems.

MATLAB is also a key part of Model-Based Design, which is used for multidomain simulation, physical and discrete-event simulation, and verification and code generation.


What’s New in MATLAB R2020a (Version 9.8)



MATLAB Web Apps
MATLAB Web App Server™ lets you host MATLAB® apps and Simulink® simulations as interactive web apps. You can create apps using App Designer, package them using MATLAB Compiler™, and host them using MATLAB Web App Server. Your end-users can access and run the web apps using a browser without installing additional software.

MATLAB Web App Server supports integration with authentication standards such as OpenID Connect and LDAP so that you can control access to your web apps. You can host and share multiple apps developed using different releases of MATLAB and Simulink.

Simulink Compiler
Simulink Compiler™ enables you to share Simulink® simulations as standalone executables. You can build the executables by packaging the compiled Simulink model and the MATLAB® code used to set up, run, and analyze a simulation. Standalone executables can be complete simulation apps that use MATLAB graphics and UIs designed with MATLAB App Designer. To co-simulate with an external simulation environment, you can generate standalone Functional Mockup Unit (FMU) binaries that adhere to the Functional Mockup Interface (FMI) standard.

To provide browser-based access to your deployed simulation, you can create a web app and host it with MATLAB Web App Server™. Simulink simulations can be packaged into software components for integration with other programming languages (with MATLAB Compiler SDK™). Large-scale deployment to enterprise systems is supported through MATLAB Production Server™. To generate C and C++ source code from Simulink, use Simulink Coder™.

Deep Learning

Data Preparation and Labeling
  • Video Labeler: Label ground-truth data in a video or image sequences
  • Audio Labeler: Interactively define and visualize ground-truth labels for audio datasets
  • New Signal Labeler: Visualize and label signals interactively
  • New Pixel label datastore: Store pixel information for 2D and 3D semantic segmentation data
  • New Audio datastore: Manage large collections of audio recordings
  • New Image datastore: Support for 3D data

Network Architectures
  • New Build advanced network architectures like GANs, Siamese networks, attention networks, and variational autoencoders
  • Train a “you-only-look-once” (YOLO) v2 deep learning object detector and generate C and CUDA code
  • Deep Network Designer: Graphically design and analyze deep networks and generate MATLAB code
  • Custom layers support: Define new layers with multiple inputs and outputs, and specify loss functions for classification and regression
  • Combine LSTM and convolutional layers for video classification and gesture recognition

Deep Learning Interoperability
  • Import and export models with other deep learning frameworks using the ONNX model format and generate CUDA code
  • New Ability to work with MobileNet-v2, ResNet-101, Inception-v3, SqueezeNet, NASNet-Large, and Xception
  • Import TensorFlow-Keras models and generate C, C++ and CUDA code
  • Import DAG networks in Caffe model importer

Network Training
  • Automatically validate network performance, and stop training when the validation metrics stop improving
  • New Train deep learning networks on 3D image data
  • Perform hyperparameter tuning using Bayesian optimization
  • Additional optimizers for training: Adam and RMSProp
  • Train DAG networks in parallel and on multiple GPUs
  • Train deep learning models on NVIDIA DGX and cloud platforms

Debugging and Visualization
  • DAG activations: Visualize intermediate activations for networks like ResNet-50, ResNet-101, GoogLeNet, and Inception-v3
  • Monitor training progress with plots for accuracy, loss, and validation metrics
  • Network Analyzer: Visualize, analyze, and find problems in network architectures before training
  • New Visualize activations of LSTM networks and use Grad-CAM to understand classification decisions

Deployment
  • New Generate code for networks such as YOLO V2 object detector, DeepLab-v3+, MobileNet-v2, Xception, DenseNet-201, and recurrent networks
  • New Deploy deep learning networks to ARM Mali GPUs
  • New Automated deployment to Jetson AGX Xavier and Jetson Nano platforms
  • Apply CUDA optimized transposes using shared memory for improved performance

Reinforcement Learning
  • New Reinforcement Learning Algorithms: Train deep neural network policies using DQN, DDPG, A2C, PPO, and other algorithms
  • Environment Modeling: Create MATLAB and Simulink models to represent environments and provide observation and reward signals for training policies
  • Training Acceleration: Parallelize policy training on GPUs and multicore CPUs
  • New Reference Examples: Implement policies for automated driving, robotics, and control design applications

Wireless Communications

5G and LTE Mobile Communications Standards
  • New 5G support in Wireless Waveform Generator App: Generate NR-TM, and uplink and downlink FRC waveforms using the Wireless Waveform Generator app
  • New Support for PRACH physical channels: Model physical random access channel (PRACH) used in initial system access
  • Support for SRS, DM-RS and PT-RS signals: Model 5G signals used for uplink channel sounding, channel estimation and phase tracking
  • New Deep learning data synthesis for 5G channel estimation: Generate deep learning training data for convolutional neural networks (CNN) used in 5G channel estimation
  • NB-IoT Uplink Shared Channel Modeling: Generate and decode the narrowband Internet of Things (NB-IoT) uplink shared channel

WLAN and Connectivity Standards
  • New System-level simulation Examples: Model an 802.11ax downlink orthogonal frequency-division multiple access (OFDMA) scenario, multiple space-time streams, and 802.11a Minstrel rate adaptation
  • New Support for IEEE 802.11ax Draft 4.1 (Wi-Fi6): Generate high-efficiency single-user null data packets (NDPs) with preamble puncturing, as defined in IEEE® P802.11ax™ Draft 4.1
  • New Link-level simulation of IEEE 802.11ax Trigger-Based Format: Configure, generate, demodulate and decode high-efficiency trigger-based (HE TB) waveforms
  • New Blind Signal Recovery and Analysis Example: blindly detect, decode and analyze multiple IEEE 802.11a and IEEE 802.11ax packets in a waveform
  • New Bluetooth Low Energy BR/EDR waveform generation and link-level simulation: Generate, demodulate, and decode Bluetooth® basic rate (BR)and extended data rate (EDR) PHY waveforms
  • Bluetooth Support in Wireless Waveform Generator App: Generate and export Bluetooth Low Energy waveforms from the Wireless Waveform Generator app
  • Bluetooth Low Energy (BLE) Examples: Simulate BLE coexistence with WLAN, and perform BLE RF-PHY blocking, intermodulation, and carrier to interference (C/I) performance receiver tests

Massive MIMO, Multi-User MIMO, and Beamforming
  • New Multiuser Block Diagonalization Beamforming: Compute precoding and combining weights for multiuser MIMO systems
  • Massive MIMO: Simulate an end-to-end MIMO link using hybrid beamforming
  • New Transmit and Receive Signals with Unlimited Antennas: Apply WLAN transmission, multipath channel modeling and receiver operations with arbitrary number of antennas and links
  • Wireless LAN: 802.11ad waveform generation with beamforming

Channel and Propagation Modeling
  • New Ray Tracing Propagation Model: New propagation model using ray tracing method of images with material reflection loss
  • New RF propagation using ray tracing: Predict the total received power and generate coverage maps with ray tracing
  • New Rain Attenuation Models: Predict signal attenuation with Global Crane Rain Attenuation and ITU models
  • RF Propagation Visualization with Ray Tracing: Configure and visualize transmitter and receiver sites, buildings, links, ray tracing results, and coverage maps using free-space, terrain, and weather-effects propagation models
  • SINR Visualization: Visualize transmitter site signal-to-interference-plus-noise ratio (SINR) on a map

RF and Digital Front End
  • Power amplifier (PA) modeling: Model wideband and narrowband power amplifiers, capturing non-linearity and memory effects based on input/output device characteristics
  • S-parameter block: Model frequency response of RF devices using S-parameter data
  • Linearize power amplifiers with DPD: Simulate linearization of RF power amplifiers with memory using digital predistortion (DPD)
  • RF budget analyzer: Analytically compute gain, noise figure, and IP3 for cascaded RF components, and visualize using Smith and polar plots

Antenna Modeling
  • New Custom Antenna Patterns: Import custom patterns expressed in phi-theta coordinates using Sensor Array Analyzer app
  • Antenna designer: Interactively select and analyze antennas with desired characteristics
  • PCB stack antenna: Design custom PCB antennas with arbitrary metal-dielectric layers and advanced meshing control
  • Gerber file generation: Prototype and implement antennas using a customizable library of RF connectors and PCB manufacturing services

Software-Defined Radio
  • Standard-compliant LTE and WLAN: Over-the-air waveform generation and capture
  • USRP E300 Series software-defined radio: Prototype and test wireless system designs on Ettus Research USRP E-300 SDRs
  • ADALM-PLUTO software-defined radio: Prototype and test wireless system designs on Analog Devices PlutoSDR

C/C++ Code Generation
  • MATLAB Coder: Generate C++ classes from MATLAB classes
  • Embedded Coder: Generate C/C++ Code for Software Compositions with Message-Based Communication
  • Fixed-Point Designer: Explore signal ranges and convert Simulink models using data type optimization

Automotive

Perception System Design
  • New Lidar Sensor Model: Generate synthetic point clouds from programmatic driving scenarios
  • New Tracking Examples: Fuse radar and lidar tracks, perform track-to-track fusion in Simulink
  • Unreal Engine® Compatible Sensor Models: Integrate your Simulink model with a camera, lidar, or radar sensor model simulating in an Unreal Engine scene
  • Monocular Camera Parameter Estimation: Configure a monocular camera by estimating its extrinsic parameters
  • Radar Sensor Model Enhancements: Model occlusions in radar sensors
  • Sensor fusion and tracking examples
  • Path Planning: Plan driving paths using an RRT* path planner and costmap
  • Lidar Segmentation: Quickly segment 3D point clouds from lidar

Test and Verification
  • New MDF Read on Linux: Open and read MDF files on Linux platform
  • MDF File Information and Sorting Functions: Quickly access MDF file metadata and sort the contents of an MDF file
  • MDF File Import Performance: Open and read MDF files significantly faster than in previous releases
  • Kinematics and Compliance Virtual Test Laboratory: Generate mapped suspension calibration parameters from spreadsheet data
  • Vector BLF File Format Support: Read and write binary BLF logging files from MATLAB
  • Prebuilt Driving Scenarios: Test driving algorithms using Euro NCAP® and other prebuilt scenarios
  • OpenDRIVE® File Import Support: Load OpenDRIVE roads into a driving scenario
  • Driving Scenario Designer: Interactively define actors and driving scenarios to test controllers and sensor fusion algorithms
  • Preassembled maneuvers for common ride and handling tests, including a double-lane change and constant radius test

Ground Truth Labeling
  • New Lidar labeling: Label lidar point clouds to train deep learning models
  • New Multisignal Ground Truth Labeling: Label multiple lidar and video signals simultaneously
  • Ground Truth Labeling: Organize labels by logical groups
  • Define multiple custom labels in Ground Truth Labeler connector
  • Ground Truth Pixel Labeling: Interactively label individual pixels in video data
  • Ground Truth Label Attributes: Organize and classify ground truth labels using attributes and sublabels

Visualization
  • New 3D Simulation Version Upgrade: Run 3D simulations using Unreal Engine, Version 4.23
  • New Headless Mode: Run 3D simulations without opening the Unreal Engine 3D visualization display
  • 3D Simulation: Develop, test, and verify driving algorithms in a 3D simulation environment rendered using the Unreal Engine by Epic Games®
  • Unreal Engine Scenes: Use prebuilt 3D scenes, including a parking lot, highway segment, and Mcity, or create your own custom scene with the Unreal Editor
  • HERE HD Live Map Reader: Read and visualize data from high-definition maps designed for automated driving applications
  • Unreal Engine 4 Interface: Use support package to customize and install additional 3D scenes
  • Maneuver Reference Applications: Use 3D environment ray tracing to determine ground location under tires during vehicle maneuver
  • Bird's-Eye Scope for Simulink: Analyze sensor coverages, detections, and tracks in your model

Electrification
  • Virtual Calibration: Use Model-Based Calibration Toolbox™ to calibrate Mapped Motor and Three-Phase Voltage Source Inverter block efficiency maps with measured data
  • Getting Started Example: Generate current controller calibration tables for flux-based motor controllers
  • Libraries of propulsion, steering, suspension, vehicle body, brake, and tire components
  • Flux-Based Motor Parameterization: Generate parameters for Flux-Based PMSM and Flux-Based PM Controller blocks​
  • Battery Parameterization: Generate parameters for Datasheet Battery and Equivalent Circuit Battery blocks

Engine Calibration
  • Deep Learning Engine Model: Generate a deep learning engine model for algorithm design and performance, fuel economy, and emissions analysis
  • ASAM CDFX File Format Support: Import, export, and modify files in calibration data file format (CDFX)
  • Timestamp Support for XCP Blocks: Communicate timestamped data between Simulink models and XCP slaves
  • Virtual Calibration: Use Model-Based Calibration Toolbox to calibrate SI and CI mapped engine blocks
  • CI and SI Engine Dynamometer Reference Applications: Resize engines and recalibrate controllers based on desired engine displacement and number of cylinders

Fuel Economy and Performance Analysis
  • New Vehicle and Trailer Blocks: Implement 3DOF trailers and vehicles with three axles
  • New Transmission Control Module: Optimize shift schedules for algorithm design and performance, fuel economy, and emissions analysis
  • HEV Reference Applications: New or updated reference applications for single-motor HEV architectures P0, P1, P2, P3, and P4. Fully assembled models use a new equivalent consumption minimization strategy (ECMS) for the supervisory hybrid control
  • Powertrain Efficiency: Evaluate and report energy and power losses at the component and system level
  • HEV Input Power-Split Reference Application: Use fully assembled model for HIL testing, tradeoff analysis, and control parameter optimization of a power-split hybrid like the Toyota Prius

AUTOSAR
  • New AUTOSAR Adaptive Platform Release 19-03: Use the 000047 (R19-03) schema to import and export ARXML files and generate AUTOSAR-compatible C ++ code
  • Blocks for Basic Software Services: Use blocks for modeling and simulating Basic Software services, including Diagnostic Event , Function Inhibition and NVRAM Manager blocks
  • Create AUTOSAR Architecture Models: Author AUTOSAR compositions, view component/composition dependencies via spotlights and simulate functional behavior with basic software services using Composition Editor (requires System Composer™). Then you can generate and package composition arxml descriptions and component code (requires Embedded Coder®).
  • AUTOSAR SW-C App: Easily configure a model as AUTOSAR classic component or adaptive application

Motor Control Blockset
Motor Control Blockset™ provides Simulink® blocks that let you create an accurate motor model. The blockset also provides tools for collecting data directly from hardware and calculating motor parameters.

ver



>> ver
––––––––––––––––––––––––––––––––––––––––––––––––––-
MATLAB Version: 9.8.0.1323502 (R2020a)
MATLAB License Number: ******
Operating System: Mac OS X Version: 10.15.4 Build: 19E287
Java Version: Java 1.8.0_202-b08 with Oracle Corporation Java HotSpot(TM) 64-Bit Server VM mixed mode
––––––––––––––––––––––––––––––––––––––––––––––––––-
MATLAB Version 9.8 (R2020a)
Simulink Version 10.1 (R2020a)
5G Toolbox Version 2.0 (R2020a)
AUTOSAR Blockset Version 2.2 (R2020a)
Aerospace Blockset Version 4.3 (R2020a)
Aerospace Toolbox Version 3.3 (R2020a)
Antenna Toolbox Version 4.2 (R2020a)
Audio Toolbox Version 2.2 (R2020a)
Automated Driving Toolbox Version 3.1 (R2020a)
Bioinformatics Toolbox Version 4.14 (R2020a)
Communications Toolbox Version 7.3 (R2020a)
Computer Vision Toolbox Version 9.2 (R2020a)
Control System Toolbox Version 10.8 (R2020a)
Curve Fitting Toolbox Version 3.5.11 (R2020a)
DO Qualification Kit Version 3.9 (R2020a)
DSP System Toolbox Version 9.10 (R2020a)
Database Toolbox Version 9.2.1 (R2020a)
Datafeed Toolbox Version 5.9.1 (R2020a)
Deep Learning Toolbox Version 14.0 (R2020a)
Econometrics Toolbox Version 5.4 (R2020a)
Embedded Coder Version 7.4 (R2020a)
Filter Design HDL Coder Version 3.1.7 (R2020a)
Financial Instruments Toolbox Version 3.0 (R2020a)
Financial Toolbox Version 5.15 (R2020a)
Fixed-Point Designer Version 7.0 (R2020a)
Fuzzy Logic Toolbox Version 2.7 (R2020a)
Global Optimization Toolbox Version 4.3 (R2020a)
HDL Coder Version 3.16 (R2020a)
IEC Certification Kit Version 3.15 (R2020a)
Image Acquisition Toolbox Version 6.2 (R2020a)
Image Processing Toolbox Version 11.1 (R2020a)
Instrument Control Toolbox Version 4.2 (R2020a)
LTE Toolbox Version 3.3 (R2020a)
MATLAB Coder Version 5.0 (R2020a)
MATLAB Compiler Version 8.0 (R2020a)
MATLAB Compiler SDK Version 6.8 (R2020a)
MATLAB Parallel Server Version 7.2 (R2020a)
MATLAB Report Generator Version 5.8 (R2020a)
Mapping Toolbox Version 4.10 (R2020a)
Mixed-Signal Blockset Version 1.2 (R2020a)
Model Predictive Control Toolbox Version 6.4 (R2020a)
Motor Control Blockset Version 1.0 (R2020a)
Navigation Toolbox Version 1.1 (R2020a)
Optimization Toolbox Version 8.5 (R2020a)
Parallel Computing Toolbox Version 7.2 (R2020a)
Partial Differential Equation Toolbox Version 3.4 (R2020a)
Phased Array System Toolbox Version 4.3 (R2020a)
Polyspace Bug Finder Version 3.2 (R2020a)
Polyspace Bug Finder Server Version 3.2 (R2020a)
Polyspace Code Prover Version 10.2 (R2020a)
Polyspace Code Prover Server Version 10.2 (R2020a)
Powertrain Blockset Version 1.7 (R2020a)
Predictive Maintenance Toolbox Version 2.2 (R2020a)
RF Blockset Version 7.4 (R2020a)
RF Toolbox Version 3.8 (R2020a)
ROS Toolbox Version 1.1 (R2020a)
Reinforcement Learning Toolbox Version 1.2 (R2020a)
Risk Management Toolbox Version 1.7 (R2020a)
Robotics System Toolbox Version 3.1 (R2020a)
Robust Control Toolbox Version 6.8 (R2020a)
Sensor Fusion and Tracking Toolbox Version 1.3 (R2020a)
SerDes Toolbox Version 1.2 (R2020a)
Signal Processing Toolbox Version 8.4 (R2020a)
SimBiology Version 5.10 (R2020a)
SimEvents Version 5.8 (R2020a)
Simscape Version 4.8 (R2020a)
Simscape Driveline Version 3.1 (R2020a)
Simscape Electrical Version 7.3 (R2020a)
Simscape Fluids Version 3.0 (R2020a)
Simscape Multibody Version 7.1 (R2020a)
Simulink 3D Animation Version 9.0 (R2020a)
Simulink Check Version 4.5 (R2020a)
Simulink Coder Version 9.3 (R2020a)
Simulink Compiler Version 1.0 (R2020a)
Simulink Control Design Version 5.5 (R2020a)
Simulink Coverage Version 5.0 (R2020a)
Simulink Design Optimization Version 3.8 (R2020a)
Simulink Design Verifier Version 4.3 (R2020a)
Simulink Desktop Real-Time Version 5.10 (R2020a)
Simulink PLC Coder Version 3.2 (R2020a)
Simulink Report Generator Version 5.8 (R2020a)
Simulink Requirements Version 1.5 (R2020a)
Simulink Test Version 3.2 (R2020a)
Stateflow Version 10.2 (R2020a)
Statistics and Machine Learning Toolbox Version 11.7 (R2020a)
Symbolic Math Toolbox Version 8.5 (R2020a)
System Composer Version 1.2 (R2020a)
System Identification Toolbox Version 9.12 (R2020a)
Text Analytics Toolbox Version 1.5 (R2020a)
Trading Toolbox Version 3.6.1 (R2020a)
Vehicle Dynamics Blockset Version 1.4 (R2020a)
WLAN Toolbox Version 3.0 (R2020a)
Wavelet Toolbox Version 5.4 (R2020a)
Wireless HDL Toolbox Version 2.0 (R2020a)






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MathWorks MATLAB R2020a v9.8.0.1323502 Linux

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MathWorks MATLAB R2020a v9.8.0.1323502 Linux | 17.6 GB

Millions of engineers and scientists worldwide use MATLAB to analyze and design the systems and products transforming our world. MATLAB is in automobile active safety systems, interplanetary spacecraft, health monitoring devices, smart power grids, and LTE cellular networks. It is used for machine learning, signal processing, image processing, computer vision, communications, computational finance, control design, robotics, and much more.

Math. Graphics. Programming.
The MATLAB platform is optimized for solving engineering and scientific problems. The matrix-based MATLAB language is the world’s most natural way to express computational mathematics. Built-in graphics make it easy to visualize and gain insights from data. A vast library of prebuilt toolboxes lets you get started right away with algorithms essential to your domain. The desktop environment invites experimentation, exploration, and discovery. These MATLAB tools and capabilities are all rigorously tested and designed to work together.

Scale. Integrate. Deploy.
MATLAB helps you take your ideas beyond the desktop. You can run your analyses on larger data sets and scale up to clusters and clouds. MATLAB code can be integrated with other languages, enabling you to deploy algorithms and applications within web, enterprise, and production systems.

Key Features
  • High-level language for scientific and engineering computing
  • Desktop environment tuned for iterative exploration, design, and problem-solving
  • Graphics for visualizing data and tools for creating custom plots
  • Apps for curve fitting, data classification, signal analysis, and many other domain-specific tasks
  • Add-on toolboxes for a wide range of engineering and scientific applications
  • Tools for building applications with custom user interfaces
  • Interfaces to C/C++, Java®, .NET, Python®, SQL, Hadoop®, and Microsoft® Excel®
  • Royalty-free deployment options for sharing MATLAB programs with end users

Why MATLAB?
MATLAB is the easiest and most productive software for engineers and scientists. Whether you’re analyzing data, developing algorithms, or creating models, MATLAB provides an environment that invites exploration and discovery. It combines a high-level language with a desktop environment tuned for iterative engineering and scientific workflows.

MATLAB Speaks Math
The matrix-based MATLAB language is the world’s most natural way to express computational mathematics. MATLAB supports both numeric and symbolic calculations. Linear algebra in MATLAB looks like linear algebra in a textbook; symbolic calculations look like the equations you write on paper. This makes it straightforward to capture the mathematics behind your ideas, which means your code is easier to write, easier to read and understand, and easier to maintain.

You can trust the results of your computations. MATLAB, which has strong roots in the numerical analysis research community, is known for its impeccable numerics. A MathWorks team of 350 engineers continuously verifies quality by running millions of tests on the MATLAB code base every day.

MATLAB does the hard work to ensure your code runs quickly. Math operations are distributed across multiple cores on your computer, library calls are heavily optimized, and all code is just-in-time compiled. You can run your algorithms in parallel by changing for-loops into parallel for-loops or by changing standard arrays into GPU or distributed arrays. Run parallel algorithms in infinitely scalable public or private clouds with no code changes.

The MATLAB language also provides features of traditional programming languages, including flow control, error handling, object-oriented programming, unit testing, and source control integration.

MATLAB Is Designed for Engineers and Scientists
MATLAB provides a desktop environment tuned for iterative engineering and scientific workflows. Integrated tools support simultaneous exploration of data and programs, letting you evaluate more ideas in less time.

  • You can interactively preview, select, and preprocess the data you want to import.
  • An extensive set of built-in math functions supports your engineering and scientific analysis.
  • 2D and 3D plotting functions enable you to visualize and understand your data and communicate results.
  • MATLAB apps allow you to perform common engineering tasks without having to program. Visualize how different algorithms work with your data, and iterate until you’ve got the results you want.
  • The integrated editing and debugging tools let you quickly explore multiple options, refine your analysis, and iterate to an optimal solution.
  • You can capture your work as sharable, interactive narratives.

Comprehensive, professional documentation written by engineers and scientists is always at your fingertips to keep you productive. Reliable, real-time technical support staff answers your questions quickly. And you can tap into the knowledge and experience of over 100,000 community members and MathWorks engineers on MATLAB Central, an open exchange for MATLAB and Simulink® users.

MATLAB and add-on toolboxes are integrated with each other and designed to work together. They offer professionally developed, rigorously tested, field-hardened, and fully documented functionality specifically for scientific and engineering applications

MATLAB Integrates Workflows
Major engineering and scientific challenges require broad coordination to take ideas to implementation. Every handoff along the way adds errors and delays.

MATLAB automates the entire path from research through production. You can:
  • Build and package custom MATLAB apps and toolboxes to share with other MATLAB users.
  • Create standalone executables to share with others who do not have MATLAB.
  • Integrate with C/C++, Java, .NET, and Python. Call those languages directly from MATLAB, or package MATLAB algorithms and applications for deployment within web, enterprise, and production systems.
  • Convert MATLAB algorithms to C, HDL, and PLC code to run on embedded devices.
  • Deploy MATLAB code to run on production Hadoop systems.

MATLAB is also a key part of Model-Based Design, which is used for multidomain simulation, physical and discrete-event simulation, and verification and code generation.


What’s New in MATLAB R2020a (Version 9.8)



MATLAB Web Apps
MATLAB Web App Server™ lets you host MATLAB® apps and Simulink® simulations as interactive web apps. You can create apps using App Designer, package them using MATLAB Compiler™, and host them using MATLAB Web App Server. Your end-users can access and run the web apps using a browser without installing additional software.

MATLAB Web App Server supports integration with authentication standards such as OpenID Connect and LDAP so that you can control access to your web apps. You can host and share multiple apps developed using different releases of MATLAB and Simulink.

Simulink Compiler
Simulink Compiler™ enables you to share Simulink® simulations as standalone executables. You can build the executables by packaging the compiled Simulink model and the MATLAB® code used to set up, run, and analyze a simulation. Standalone executables can be complete simulation apps that use MATLAB graphics and UIs designed with MATLAB App Designer. To co-simulate with an external simulation environment, you can generate standalone Functional Mockup Unit (FMU) binaries that adhere to the Functional Mockup Interface (FMI) standard.

To provide browser-based access to your deployed simulation, you can create a web app and host it with MATLAB Web App Server™. Simulink simulations can be packaged into software components for integration with other programming languages (with MATLAB Compiler SDK™). Large-scale deployment to enterprise systems is supported through MATLAB Production Server™. To generate C and C++ source code from Simulink, use Simulink Coder™.

Deep Learning

Data Preparation and Labeling
  • Video Labeler: Label ground-truth data in a video or image sequences
  • Audio Labeler: Interactively define and visualize ground-truth labels for audio datasets
  • New Signal Labeler: Visualize and label signals interactively
  • New Pixel label datastore: Store pixel information for 2D and 3D semantic segmentation data
  • New Audio datastore: Manage large collections of audio recordings
  • New Image datastore: Support for 3D data

Network Architectures
  • New Build advanced network architectures like GANs, Siamese networks, attention networks, and variational autoencoders
  • Train a “you-only-look-once” (YOLO) v2 deep learning object detector and generate C and CUDA code
  • Deep Network Designer: Graphically design and analyze deep networks and generate MATLAB code
  • Custom layers support: Define new layers with multiple inputs and outputs, and specify loss functions for classification and regression
  • Combine LSTM and convolutional layers for video classification and gesture recognition

Deep Learning Interoperability
  • Import and export models with other deep learning frameworks using the ONNX model format and generate CUDA code
  • New Ability to work with MobileNet-v2, ResNet-101, Inception-v3, SqueezeNet, NASNet-Large, and Xception
  • Import TensorFlow-Keras models and generate C, C++ and CUDA code
  • Import DAG networks in Caffe model importer

Network Training
  • Automatically validate network performance, and stop training when the validation metrics stop improving
  • New Train deep learning networks on 3D image data
  • Perform hyperparameter tuning using Bayesian optimization
  • Additional optimizers for training: Adam and RMSProp
  • Train DAG networks in parallel and on multiple GPUs
  • Train deep learning models on NVIDIA DGX and cloud platforms

Debugging and Visualization
  • DAG activations: Visualize intermediate activations for networks like ResNet-50, ResNet-101, GoogLeNet, and Inception-v3
  • Monitor training progress with plots for accuracy, loss, and validation metrics
  • Network Analyzer: Visualize, analyze, and find problems in network architectures before training
  • New Visualize activations of LSTM networks and use Grad-CAM to understand classification decisions

Deployment
  • New Generate code for networks such as YOLO V2 object detector, DeepLab-v3+, MobileNet-v2, Xception, DenseNet-201, and recurrent networks
  • New Deploy deep learning networks to ARM Mali GPUs
  • New Automated deployment to Jetson AGX Xavier and Jetson Nano platforms
  • Apply CUDA optimized transposes using shared memory for improved performance

Reinforcement Learning
  • New Reinforcement Learning Algorithms: Train deep neural network policies using DQN, DDPG, A2C, PPO, and other algorithms
  • Environment Modeling: Create MATLAB and Simulink models to represent environments and provide observation and reward signals for training policies
  • Training Acceleration: Parallelize policy training on GPUs and multicore CPUs
  • New Reference Examples: Implement policies for automated driving, robotics, and control design applications

Wireless Communications

5G and LTE Mobile Communications Standards
  • New 5G support in Wireless Waveform Generator App: Generate NR-TM, and uplink and downlink FRC waveforms using the Wireless Waveform Generator app
  • New Support for PRACH physical channels: Model physical random access channel (PRACH) used in initial system access
  • Support for SRS, DM-RS and PT-RS signals: Model 5G signals used for uplink channel sounding, channel estimation and phase tracking
  • New Deep learning data synthesis for 5G channel estimation: Generate deep learning training data for convolutional neural networks (CNN) used in 5G channel estimation
  • NB-IoT Uplink Shared Channel Modeling: Generate and decode the narrowband Internet of Things (NB-IoT) uplink shared channel

WLAN and Connectivity Standards
  • New System-level simulation Examples: Model an 802.11ax downlink orthogonal frequency-division multiple access (OFDMA) scenario, multiple space-time streams, and 802.11a Minstrel rate adaptation
  • New Support for IEEE 802.11ax Draft 4.1 (Wi-Fi6): Generate high-efficiency single-user null data packets (NDPs) with preamble puncturing, as defined in IEEE® P802.11ax™ Draft 4.1
  • New Link-level simulation of IEEE 802.11ax Trigger-Based Format: Configure, generate, demodulate and decode high-efficiency trigger-based (HE TB) waveforms
  • New Blind Signal Recovery and Analysis Example: blindly detect, decode and analyze multiple IEEE 802.11a and IEEE 802.11ax packets in a waveform
  • New Bluetooth Low Energy BR/EDR waveform generation and link-level simulation: Generate, demodulate, and decode Bluetooth® basic rate (BR)and extended data rate (EDR) PHY waveforms
  • Bluetooth Support in Wireless Waveform Generator App: Generate and export Bluetooth Low Energy waveforms from the Wireless Waveform Generator app
  • Bluetooth Low Energy (BLE) Examples: Simulate BLE coexistence with WLAN, and perform BLE RF-PHY blocking, intermodulation, and carrier to interference (C/I) performance receiver tests

Massive MIMO, Multi-User MIMO, and Beamforming
  • New Multiuser Block Diagonalization Beamforming: Compute precoding and combining weights for multiuser MIMO systems
  • Massive MIMO: Simulate an end-to-end MIMO link using hybrid beamforming
  • New Transmit and Receive Signals with Unlimited Antennas: Apply WLAN transmission, multipath channel modeling and receiver operations with arbitrary number of antennas and links
  • Wireless LAN: 802.11ad waveform generation with beamforming

Channel and Propagation Modeling
  • New Ray Tracing Propagation Model: New propagation model using ray tracing method of images with material reflection loss
  • New RF propagation using ray tracing: Predict the total received power and generate coverage maps with ray tracing
  • New Rain Attenuation Models: Predict signal attenuation with Global Crane Rain Attenuation and ITU models
  • RF Propagation Visualization with Ray Tracing: Configure and visualize transmitter and receiver sites, buildings, links, ray tracing results, and coverage maps using free-space, terrain, and weather-effects propagation models
  • SINR Visualization: Visualize transmitter site signal-to-interference-plus-noise ratio (SINR) on a map

RF and Digital Front End
  • Power amplifier (PA) modeling: Model wideband and narrowband power amplifiers, capturing non-linearity and memory effects based on input/output device characteristics
  • S-parameter block: Model frequency response of RF devices using S-parameter data
  • Linearize power amplifiers with DPD: Simulate linearization of RF power amplifiers with memory using digital predistortion (DPD)
  • RF budget analyzer: Analytically compute gain, noise figure, and IP3 for cascaded RF components, and visualize using Smith and polar plots

Antenna Modeling
  • New Custom Antenna Patterns: Import custom patterns expressed in phi-theta coordinates using Sensor Array Analyzer app
  • Antenna designer: Interactively select and analyze antennas with desired characteristics
  • PCB stack antenna: Design custom PCB antennas with arbitrary metal-dielectric layers and advanced meshing control
  • Gerber file generation: Prototype and implement antennas using a customizable library of RF connectors and PCB manufacturing services

Software-Defined Radio
  • Standard-compliant LTE and WLAN: Over-the-air waveform generation and capture
  • USRP E300 Series software-defined radio: Prototype and test wireless system designs on Ettus Research USRP E-300 SDRs
  • ADALM-PLUTO software-defined radio: Prototype and test wireless system designs on Analog Devices PlutoSDR

C/C++ Code Generation
  • MATLAB Coder: Generate C++ classes from MATLAB classes
  • Embedded Coder: Generate C/C++ Code for Software Compositions with Message-Based Communication
  • Fixed-Point Designer: Explore signal ranges and convert Simulink models using data type optimization

Automotive

Perception System Design
  • New Lidar Sensor Model: Generate synthetic point clouds from programmatic driving scenarios
  • New Tracking Examples: Fuse radar and lidar tracks, perform track-to-track fusion in Simulink
  • Unreal Engine® Compatible Sensor Models: Integrate your Simulink model with a camera, lidar, or radar sensor model simulating in an Unreal Engine scene
  • Monocular Camera Parameter Estimation: Configure a monocular camera by estimating its extrinsic parameters
  • Radar Sensor Model Enhancements: Model occlusions in radar sensors
  • Sensor fusion and tracking examples
  • Path Planning: Plan driving paths using an RRT* path planner and costmap
  • Lidar Segmentation: Quickly segment 3D point clouds from lidar

Test and Verification
  • New MDF Read on Linux: Open and read MDF files on Linux platform
  • MDF File Information and Sorting Functions: Quickly access MDF file metadata and sort the contents of an MDF file
  • MDF File Import Performance: Open and read MDF files significantly faster than in previous releases
  • Kinematics and Compliance Virtual Test Laboratory: Generate mapped suspension calibration parameters from spreadsheet data
  • Vector BLF File Format Support: Read and write binary BLF logging files from MATLAB
  • Prebuilt Driving Scenarios: Test driving algorithms using Euro NCAP® and other prebuilt scenarios
  • OpenDRIVE® File Import Support: Load OpenDRIVE roads into a driving scenario
  • Driving Scenario Designer: Interactively define actors and driving scenarios to test controllers and sensor fusion algorithms
  • Preassembled maneuvers for common ride and handling tests, including a double-lane change and constant radius test

Ground Truth Labeling
  • New Lidar labeling: Label lidar point clouds to train deep learning models
  • New Multisignal Ground Truth Labeling: Label multiple lidar and video signals simultaneously
  • Ground Truth Labeling: Organize labels by logical groups
  • Define multiple custom labels in Ground Truth Labeler connector
  • Ground Truth Pixel Labeling: Interactively label individual pixels in video data
  • Ground Truth Label Attributes: Organize and classify ground truth labels using attributes and sublabels

Visualization
  • New 3D Simulation Version Upgrade: Run 3D simulations using Unreal Engine, Version 4.23
  • New Headless Mode: Run 3D simulations without opening the Unreal Engine 3D visualization display
  • 3D Simulation: Develop, test, and verify driving algorithms in a 3D simulation environment rendered using the Unreal Engine by Epic Games®
  • Unreal Engine Scenes: Use prebuilt 3D scenes, including a parking lot, highway segment, and Mcity, or create your own custom scene with the Unreal Editor
  • HERE HD Live Map Reader: Read and visualize data from high-definition maps designed for automated driving applications
  • Unreal Engine 4 Interface: Use support package to customize and install additional 3D scenes
  • Maneuver Reference Applications: Use 3D environment ray tracing to determine ground location under tires during vehicle maneuver
  • Bird's-Eye Scope for Simulink: Analyze sensor coverages, detections, and tracks in your model

Electrification
  • Virtual Calibration: Use Model-Based Calibration Toolbox™ to calibrate Mapped Motor and Three-Phase Voltage Source Inverter block efficiency maps with measured data
  • Getting Started Example: Generate current controller calibration tables for flux-based motor controllers
  • Libraries of propulsion, steering, suspension, vehicle body, brake, and tire components
  • Flux-Based Motor Parameterization: Generate parameters for Flux-Based PMSM and Flux-Based PM Controller blocks​
  • Battery Parameterization: Generate parameters for Datasheet Battery and Equivalent Circuit Battery blocks

Engine Calibration
  • Deep Learning Engine Model: Generate a deep learning engine model for algorithm design and performance, fuel economy, and emissions analysis
  • ASAM CDFX File Format Support: Import, export, and modify files in calibration data file format (CDFX)
  • Timestamp Support for XCP Blocks: Communicate timestamped data between Simulink models and XCP slaves
  • Virtual Calibration: Use Model-Based Calibration Toolbox to calibrate SI and CI mapped engine blocks
  • CI and SI Engine Dynamometer Reference Applications: Resize engines and recalibrate controllers based on desired engine displacement and number of cylinders

Fuel Economy and Performance Analysis
  • New Vehicle and Trailer Blocks: Implement 3DOF trailers and vehicles with three axles
  • New Transmission Control Module: Optimize shift schedules for algorithm design and performance, fuel economy, and emissions analysis
  • HEV Reference Applications: New or updated reference applications for single-motor HEV architectures P0, P1, P2, P3, and P4. Fully assembled models use a new equivalent consumption minimization strategy (ECMS) for the supervisory hybrid control
  • Powertrain Efficiency: Evaluate and report energy and power losses at the component and system level
  • HEV Input Power-Split Reference Application: Use fully assembled model for HIL testing, tradeoff analysis, and control parameter optimization of a power-split hybrid like the Toyota Prius

AUTOSAR
  • New AUTOSAR Adaptive Platform Release 19-03: Use the 000047 (R19-03) schema to import and export ARXML files and generate AUTOSAR-compatible C ++ code
  • Blocks for Basic Software Services: Use blocks for modeling and simulating Basic Software services, including Diagnostic Event , Function Inhibition and NVRAM Manager blocks
  • Create AUTOSAR Architecture Models: Author AUTOSAR compositions, view component/composition dependencies via spotlights and simulate functional behavior with basic software services using Composition Editor (requires System Composer™). Then you can generate and package composition arxml descriptions and component code (requires Embedded Coder®).
  • AUTOSAR SW-C App: Easily configure a model as AUTOSAR classic component or adaptive application

Motor Control Blockset
Motor Control Blockset™ provides Simulink® blocks that let you create an accurate motor model. The blockset also provides tools for collecting data directly from hardware and calculating motor parameters.

ver



>> ver
––––––––––––––––––––––––––––––––––––––––––––––––––-
MATLAB Version: 9.8.0.1323502 (R2020a)
MATLAB License Number: ******
Operating System: Linux 5.0.0-32-generic #34~18.04.2-Ubuntu SMP Thu Oct 10 10:36:02 UTC 2019 x86_64
Java Version: Java 1.8.0_202-b08 with Oracle Corporation Java HotSpot(TM) 64-Bit Server VM mixed mode
––––––––––––––––––––––––––––––––––––––––––––––––––-
MATLAB Version 9.8 (R2020a)
Simulink Version 10.1 (R2020a)
5G Toolbox Version 2.0 (R2020a)
AUTOSAR Blockset Version 2.2 (R2020a)
Aerospace Blockset Version 4.3 (R2020a)
Aerospace Toolbox Version 3.3 (R2020a)
Antenna Toolbox Version 4.2 (R2020a)
Audio Toolbox Version 2.2 (R2020a)
Automated Driving Toolbox Version 3.1 (R2020a)
Bioinformatics Toolbox Version 4.14 (R2020a)
Communications Toolbox Version 7.3 (R2020a)
Computer Vision Toolbox Version 9.2 (R2020a)
Control System Toolbox Version 10.8 (R2020a)
Curve Fitting Toolbox Version 3.5.11 (R2020a)
DO Qualification Kit Version 3.9 (R2020a)
DSP System Toolbox Version 9.10 (R2020a)
Database Toolbox Version 9.2.1 (R2020a)
Datafeed Toolbox Version 5.9.1 (R2020a)
Deep Learning Toolbox Version 14.0 (R2020a)
Econometrics Toolbox Version 5.4 (R2020a)
Embedded Coder Version 7.4 (R2020a)
Filter Design HDL Coder Version 3.1.7 (R2020a)
Financial Instruments Toolbox Version 3.0 (R2020a)
Financial Toolbox Version 5.15 (R2020a)
Fixed-Point Designer Version 7.0 (R2020a)
Fuzzy Logic Toolbox Version 2.7 (R2020a)
GPU Coder Version 1.5 (R2020a)
Global Optimization Toolbox Version 4.3 (R2020a)
HDL Coder Version 3.16 (R2020a)
HDL Verifier Version 6.1 (R2020a)
IEC Certification Kit Version 3.15 (R2020a)
Image Acquisition Toolbox Version 6.2 (R2020a)
Image Processing Toolbox Version 11.1 (R2020a)
Instrument Control Toolbox Version 4.2 (R2020a)
LTE Toolbox Version 3.3 (R2020a)
MATLAB Coder Version 5.0 (R2020a)
MATLAB Compiler Version 8.0 (R2020a)
MATLAB Compiler SDK Version 6.8 (R2020a)
MATLAB Parallel Server Version 7.2 (R2020a)
MATLAB Report Generator Version 5.8 (R2020a)
Mapping Toolbox Version 4.10 (R2020a)
Mixed-Signal Blockset Version 1.2 (R2020a)
Model Predictive Control Toolbox Version 6.4 (R2020a)
Motor Control Blockset Version 1.0 (R2020a)
Navigation Toolbox Version 1.1 (R2020a)
Optimization Toolbox Version 8.5 (R2020a)
Parallel Computing Toolbox Version 7.2 (R2020a)
Partial Differential Equation Toolbox Version 3.4 (R2020a)
Phased Array System Toolbox Version 4.3 (R2020a)
Polyspace Bug Finder Version 3.2 (R2020a)
Polyspace Bug Finder Server Version 3.2 (R2020a)
Polyspace Code Prover Version 10.2 (R2020a)
Polyspace Code Prover Server Version 10.2 (R2020a)
Powertrain Blockset Version 1.7 (R2020a)
Predictive Maintenance Toolbox Version 2.2 (R2020a)
RF Blockset Version 7.4 (R2020a)
RF Toolbox Version 3.8 (R2020a)
ROS Toolbox Version 1.1 (R2020a)
Reinforcement Learning Toolbox Version 1.2 (R2020a)
Risk Management Toolbox Version 1.7 (R2020a)
Robotics System Toolbox Version 3.1 (R2020a)
Robust Control Toolbox Version 6.8 (R2020a)
Sensor Fusion and Tracking Toolbox Version 1.3 (R2020a)
SerDes Toolbox Version 1.2 (R2020a)
Signal Processing Toolbox Version 8.4 (R2020a)
SimBiology Version 5.10 (R2020a)
SimEvents Version 5.8 (R2020a)
Simscape Version 4.8 (R2020a)
Simscape Driveline Version 3.1 (R2020a)
Simscape Electrical Version 7.3 (R2020a)
Simscape Fluids Version 3.0 (R2020a)
Simscape Multibody Version 7.1 (R2020a)
Simulink 3D Animation Version 9.0 (R2020a)
Simulink Check Version 4.5 (R2020a)
Simulink Code Inspector Version 3.6 (R2020a)
Simulink Coder Version 9.3 (R2020a)
Simulink Compiler Version 1.0 (R2020a)
Simulink Control Design Version 5.5 (R2020a)
Simulink Coverage Version 5.0 (R2020a)
Simulink Design Optimization Version 3.8 (R2020a)
Simulink Design Verifier Version 4.3 (R2020a)
Simulink PLC Coder Version 3.2 (R2020a)
Simulink Report Generator Version 5.8 (R2020a)
Simulink Requirements Version 1.5 (R2020a)
Simulink Test Version 3.2 (R2020a)
SoC Blockset Version 1.2 (R2020a)
Stateflow Version 10.2 (R2020a)
Statistics and Machine Learning Toolbox Version 11.7 (R2020a)
Symbolic Math Toolbox Version 8.5 (R2020a)
System Composer Version 1.2 (R2020a)
System Identification Toolbox Version 9.12 (R2020a)
Text Analytics Toolbox Version 1.5 (R2020a)
Trading Toolbox Version 3.6.1 (R2020a)
Vehicle Dynamics Blockset Version 1.4 (R2020a)
Vehicle Network Toolbox Version 4.4 (R2020a)
Vision HDL Toolbox Version 2.1 (R2020a)
WLAN Toolbox Version 3.0 (R2020a)
Wavelet Toolbox Version 5.4 (R2020a)
Wireless HDL Toolbox Version 2.0 (R2020a)




新人报道!

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很小了解如何获得电魂,有个软件要2个电魂,好困扰!

新人报道

服了呀,只能回复两个,裂开了。。。


Autodesk Factory Design Utilities 2021 完美激活

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Autodesk Factory Design Utilities 2021,使用此软件,您可以计划和验证工厂布局,以进行有效的设备布置,从而提高生产性能。
快速追踪您的工厂
从最初的生产概念开发到持续的运营改进,Autodesk工具将整个生产团队召集在一起,以帮助您计划,建造和管理高效的工厂。
Autodesk Factory Design Utilities 2021优势概述
工厂设计实用程序为工厂车间布局提供设计工具和优化的环境。它们还允许您打开旧版DWG设备布局,并为这些工程图添加工厂智能。然后,可以使用工厂图纸在Inventor Factory中填充3D布局。这有助于弥合2D环境中的建模与3D空间之间的差距,并节省您的处理时间。



应对您的许多工程挑战
协调项目贡献者
内外协调人
与内部团队有效合作
以及外部设备供应商,系统集成商,架构师,工程师和承包商。

提高生产效率
优化生产效率
在设计过程的早期评估生产概念,以最大程度地减少瓶颈,同时计划当前和将来的生产输出。

准时启动工厂
按时按预算启动
通过对安装进行排序和调度来减轻施工风险,同时避免导致项目延误的不可预见的问题。
产品设计与制造系列提供了可在Inventor内部正常工作的工具-包括高级仿真,5轴CAM和嵌套,以及AutoCAD和Fusion360。该系列包括:

Inventor
AutoCAD
Navisworks
And more
和更多
Autodesk Factory Design Utilities 2020功能概述
设计工具可创建,发布,共享和管理工厂布局的3D内容。
设计设施布局。可视化并检测大型设施布局中的冲突。
简化投标建议书的设计并产生更具吸引力的3D销售工具。
建模和模拟您的制造过程。
工厂设计实用程序软件可帮助总部位于德国汉堡的灌装机制造商计划整个工厂和工作流程。它使公司可以使用单个数字模型完成任务。
汽车工业输送机系统制造商在安装开始之前使用激光扫描来发现潜在的冲突和问题。
该热处理系统制造商的工程师为客户提供了在特定环境中更清晰的设计印象,从而减少了错误。
技术细节和系统要求
支持的操作系统:Windows 10 / Windows 8.1 / Windows 7
处理器:最低:2.5 GHz或更快
RAM:最小:8 GB RAM,用于少于500个零件的装配
可用硬盘空间:建议40 GB或更多
GPU:最低:1 GB GPU,具有29 Gbps带宽并符合DirectX 11


(回复可见内容)



关于激活

0.Unzip/Unrar Start sfx installer and wait for the installation to start
  or mount ISO

1.Install Autodesk Factory Design Utilities 2021

2.Use as Serial 666-69696969, 667-98989898, 400-45454545 066-66666666 ..
  or anything matching those templates

3.Use as Product Key P03M1

4.Finish the installation & restart Autodesk Product
  Choose Enter a Serial

ACTIVATION : We suggest blocking outgoing traffic (faster and easier to activate)

5.Before clicking on Activate
  You have 2 options :
   - a) Disable Your network Card, pull the network cable out or block with firewall
     (this is just to disable online checks) it will tell you that an internet Connection is Required
     simply click on close and click on activate again

OR
   - b) Click on Activate and it will do an online check, simply click
     on close and click on activate again.


Choose option a or b.

6. Select I have an activation code from Autodesk

7.Once at the activation screen:
  start XFORCE Keygen with administrator rights

8.Click on Mem Patch (you should see successfully patched)

9.Copy the request code into the keygen and press generate

10.Now copy the activation code back to the activation screen and click Next
  You have a fully registered autodesk product

  You may get this message while your outgoing traffic is blocked, or you are off internet
  Your online activation request has returned an error (800c0005) which is not allowing your request to be processed using our automated systems.
  just Click Close


NB: Make sure you are running the Keygen as administrator from your HDD and with UAC off on Windows 7/8/10
    You can apply updates before or after activation

STAAD Foundation Advanced CONNECT Edition V9 Update 2 完美激活版

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STAAD Foundation Advanced CONNECT Edition V9 Update 2 | 770.1 mb

Bentley Systems Inc., is pleased to announce the availability of STAAD Foundation Advanced CONNECT Edition V9 Update 2 (version 9.2.0.34) . This software is used for the analysis and design of isolated footings, combined footings, strip footings, pile caps and mat foundations.
STAAD Foundation Advanced CONNECT Editio v9破解版是一款用于分离和设计隔离基础,组合基础,条形基础,桩帽和垫基础。它可以用作独立产品或与STAAD.Pro集成工具。STAAD Foundation Advanced通过与STAAD.Pro集成或作为独立应用程序为您提供简化的工作流程。您可以设计几乎任何类型的基础,从基础到最复杂。
  • - 轻松模拟复杂或简单的基础,例如支持垂直容器,水平容器,水箱和其他基础的植物基础
  • - 快速建模常见的基础,如隔离,组合,条带,桩帽等等
  • - 简化具有挑战性的场景,例如振动机器基础,桥墩横向分析或使用FEA进行垫子设计
  • - 通过与STAAD.Pro集成,有效地将结构模型与基础模型结合使用,包括两种模型中的自动同步变化


CONNECT Edition v9.2.0 Release Notes


The following features have been implemented and/or enhanced since the CONNECT Edition V9.1 (Release 9.1.0.14) of STAAD Foundation Advanced.

Australian code AS3600-2018

The 2018 edition of the Australian code with Amendment 1 is now available for design of isolated footings, combined footings and pilecaps in the General mode of the program.

Isolated footings with the column located away from the center

This feature, which was disabled a few versions ago, has now been restored.


The user has to specify the offset distance along the global X and Z axis. In the General as well as Toolkit modes of the program, this is done through the Footing Geometry page.


An offset is positive if it is along the positive direction of the respective axis. Similarly, a negative value should be specified if the column is located on the negative side of the corresponding global axis with respect to the center of the footing. The positive directions of the X and Z axis are as shown in the figure below.


For the purposes of calculating soil pressures, and the footing area in contact, the loads acting on the footing through the column/pedestal are transferred to the center of the footing. Hence, the vertical force transmitted by the column will induce a moment at the center of the footing equal to the force times the offset distance between the center of the column and center of the footing. Bending moments, oneway and two-shears are calculated based on the actual position of the column/pedestal.

As we know, the program supports two types of design:

- The footing dimension is set by the user – also known as Set Dimension.
- The user instructs the program to calculate a suitable dimension – also known as Calculate Dimension.

The offset values of the column/pedestal are considered to be constant for both types of design. In other words, the column/pedestal is assumed to be at a fixed distance away from the center of the footing, as defined by the X and Z offsets, regardless of the footing size computed by the program.

For the purposes of calculating the overturning and restoring moments for stability checks, the rules described in the following figure are used.


Factor of safety against overturning = Restoring moment / Overturning moment

In the above figure, P is the vertical load, H the horizontal force and M the bending moment transmitted into the footing by the column or pedestal.

The program output is along the same lines as that for isolated footings without any eccentrically located column/pedestal.

Pedestal Design Enhancements

Pedestal design is now available in a few more modules of the program. The output too has been enhanced to include the P-M values for the provided reinforcement in a tabular form in the calculation report. In the General mode of the program, the P-M curve of the values in that table is also provided. The following table provides a summary of the pedestal design capabilities currently available in the General and toolkit modes of the program.


Horizontal vessels – reports of stability checks for sliding

For horizontal vessels, the results of stability checks for sliding are now reported in the calculation sheet. Results of checks against overturning have been available in the calculation sheet in past versions.


Pilecaps – reporting the pile reaction summary for service load cases

For the pilecap foundation in the general and toolkit modes, the maximum pile reactions for lateral, vertical and uplift for service load combinations are now reported in the calculation sheet. This feature is now available for several design codes (but not all).


Improvements in the creation and presentation of results in the calculation report

In past versions, a single calculation report was created that included the results of successful design of footings or pilecaps for every support that was included in the job. If the amount of data such as the number of load cases or number of supports was large, it often led to significant time taken in displaying the report and in printing it or saving it as a PDF because this report ran into dozens or even hundreds of megabytes of data.

In this version, the reporting system has been changed so that they are created and displayed only for one support at a time. Thus, a giant single document holding the results of all the foundations designed in a job has been replaced with multiple calculation sheets.

Once the analysis/design for the current job is completed, the program will shift the focus automatically to the View menu, and, the Calculation Sheet for the first support in the job will be displayed. One can change the support number from the drop-down list in the menu bar, and, the corresponding Calculation Sheet will get loaded.

For printing it or saving it as a PDF, the Print Calculation Sheet button has also been moved to the top of the sheet so that the extra step of scrolling to the bottom of the page can be avoided.


Mat foundations - Report showing details for load cases for which static equilibrium is not met

For mat foundations, the analysis of the mat may not be successful due to reasons such as - a low vertical load combined with a high overturning moment may result in all the soil springs losing contact with the soil. Such cases are usually characterized by instability warnings in the output file for the STAAD.Pro FE model of the mat, large displacements, and a failure to meet static equilibrium for those load cases.

For those load cases, as shown in the next figure, a report titled "Static Equilibrium Mismatch Report" showing the total applied loads and total reactions is now provided in the calculation sheet. It also contains a row titled "Difference" in which non-zero values indicate the degrees of freedom for which the equilibrium is not satisfied.

Additionally, a warning will be shown in the output pane listing those load cases.


Multiplying factor for surcharge loads

In past versions, for the purpose of computing the soil pressures for service load cases, and for the stability checks (overturning and sliding), the surcharge load on footings was treated as a dead load. Thus, in the various load combinations, it was multiplied by the same load factor with which the dead load and selfweight of the footing was multiplied by.

Based on requests from various users, a greater amount of flexibility has been introduced in this version in how surcharge load should be treated. Thus, if the user wants SFA to use one load factor for concrete deadweight and soil weight, and another load factor for surcharge, on a load case by load case basis, he/she can now do that in the manner described here.

General Mode - Isolated, Combined footings and pilecaps for the ACI code : In the Apply Selfweight and Dead weight factor table, a separate column is now available for Surcharge in which users can specify the load factor that should be used for that load item in the individual load combinations.



For example, if one of service load combination that is being solved for finding the soil pressures happens to be

0.9*DL + 1.1*LL

then, if the user chooses to treat surcharge pressures as a

a. dead load, the multiplying factor used will be 0.9
b. live load, the multiplying factor used will be 1.1

STAAD Foundation Advanced a software package for the analysis and design of a variety of foundations. These include general foundation types such as isolated, combined footings, pile caps, slab on grade or on piles (mat foundations), octagonal, strap, and, plant foundations such as vertical vessel and heat exchanger foundations.

A part of the STAAD family of products, STAAD Foundation Advanced can import and update the geometry, loads, and reactions from a STAAD.Pro model after which it will design the foundation type that we want at those supports. If the type happens to be a pilecap, it can determine a number of pile arrangements and design the pilecap for the arrangment that we choose. Data can also be brought from spreadsheets (e.g., such as that in Microsoft Office Excel) into STAAD Foundation Advanced.

The output from the program includes customizable reports of the calculations performed, general arrangement drawings, and schedule drawings. The reports are a useful tool for line by line checks to determine the correctness of the calculations if the engineer wishes to do so. The program's graphical interface enables users to view the displaced shapes, shear and moment diagrams, stress distribution, and, reinforcement layout.

For mat foundation designs, STAAD Foundation Advanced creates a finite element model of the mat slab on grade. Soil is treated as spring supports whose stiffness is determined based on the size of the elements of the FE mesh. The model is then analyzed using STAAD.Pro, and, design of the slab is performed by aggregating the results across elements that are clustered into design strips.

Bentley STAAD Foundation Advanced

Bentley Systems, Incorporated. is the global leader dedicated to providing architects, engineers, constructors, and owner-operators with comprehensive architecture and engineering software solutions for sustaining infrastructure. Founded in 1984, Bentley has nearly 3,000 colleagues in more than 45 countries, $500 million in annual revenues, and, since 2001, has invested more than $1 billion in research, development, and acquisitions.

Product: STAAD Foundation
Version: Advanced CONNECT Edition V9 Update 2 (version 9.2.0.34)
Supported Architectures: x64
Website Home Page : www.bentley.com
Language: english
System Requirements: PC *
Supported Operating Systems: *
Size: 770.1 mb


* System Requirements:


System Requirements

- The following hardware requirements are suggested minimums. Systems with increased capacity provide enhanced performance.
- PC with Intel-Pentium or equivalent.
- Graphics card and monitor with 1280x1024 resolution, 256 color display (16 bit high color recommended).
- System memory: Minimum of 1 GB is required and suitable for small to medium problems; 2GB is recommended. However, for large, complex problems up to 8 GB may be needed.
- Windows 8.1 (64 bit) or Windows 10 (64 bit) operating system.

Note: Windows XP, Windows NT, Windows 2000, and Microsoft® Vista, Windows 7, and 32-bit versions of Windows are no longer supported.
- Sufficient free space on the hard disk to hold the program and data files. The disk space requirement will vary depending on the modules you are installing. A typical minimum is 500MB free space.
- A multimedia ready system with sound card and speakers is needed to run the tutorial movies and slide shows.

Additional RAM, disk space, and video memory will enhance the performance of STAAD Foundation Advanced.

You should have a basic familiarity with Microsoft Windows operating systems in order to use the software


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Mari Extension Pack 5 R2 Patch 3 完美激活

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MARI Extension Pack 5是Foundry的适用于MARI的行业标准插件的下一部分。这个带来得是完整安装包。


主要功能包括:
上百种新功能和改进
125个新的程序节点
42个新的调整节点
56个新功能节点
109工具新增
包括65种预设的智能口罩
Pattern Engine创建无休止的过程图案和纹理
558个模式引擎预设
标记菜单和热箱
工作流增强功能,用于管理层,渠道和项目
许多Nodegraph改善生活质量
完整的在线帮助(可选择脱机)和数小时的免费教程
MARI下载地址:https://www.sdbeta.com/wg/2019/0329/229122.html
安装Mari Extension Pack
找到您的MARI安装目录。
在安装目录中找到文件夹
\ Bundle \ Media \ ModoBakePresets \
只需提取MariExtensionPack5_BakePresets.zip
进入ModoBakePresets文件夹。


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MARI的插件

要求
-----------------
-Mari 4.2v2或更高版本
-不支持Mari非商业版本。

建议使用Mari 4.5v1或更高版本


发行说明和完整的在线帮助
-----------------
http://www.campi3d.com/External/MariExtensionPack/userGuide5R2v1/MARI%20Extension%20Pack.html?MariExtensionPack5.html

可以通过“ MARI帮助”菜单访问在线帮助文件。

新人报道

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初到乍来,请多多指教,本人一定遵守版规

PTC Creo 7.0.0.0 中文版授权激活教程

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PTC Creo 7.0.0.0 是美国PTC(Parametric Technology Corporation)公司的CAD / CAM / CAE系统是顶级CAD系统,涵盖设计,生产的技术准备和产品制造的所有领域。 PTC推出具有强大功能的Creo 7.0,用于生成设计和仿真驱动设计3D建模设备的广泛功能,高质量的结果以及对后续更改的抵抗力,使Creo成为CAD / CAM / CAE系统的领导者之一,并可以直接访问Windchill PDMLink产品生命周期支持系统。 Creo在PLM系统中。现在,产品设计和制造团队比以往任何时候都更需要在不牺牲创新或质量的情况下更高效且更经济地打造产品。幸运的是,Creo 提供了当今市场上最具可扩展性的 3D CAD 产品开发包和工具。PTC使全球制造商能够通过软件解决方案实现两位数的影响,这些解决方案使他们能够加快产品和服务创新,提高运营效率并提高员工生产率。 PTC与广泛的合作伙伴网络相结合,为客户提供了如何灵活地部署其技术以在本地,云端或通过其纯SaaS平台推动数字化转型的灵活性。 在PTC,我们不仅可以想象一个更美好的世界,还可以实现它。PTC的开发人员创建了Creo Parametric,将其作为可靠的基础软件,使用户可以使用每个组件扩展更深的功能。 随着您的产品工程设计变得越来越复杂,Creo提供了扩展的功能来满足您的要求。 并非每种产品都是平等的,您的3D CAD解决方案也不应该如此。 探索Creo的功能,这些功能可塑造出您独特的工艺。
新版Creo 7.0 在创成式设计、实时仿真、多体设计和增材制造等领域都有突破性的创新。Creo 在 CAD 领域处于领先地位已有 30 多年,它高效、精确和直观地将您的产品从概念变为数字原型。

Creo 7.0的功能使创新成为设计过程的一部分
波士顿-2020年4月14日-PTC(NASDAQ:PTC)发布了下一代Creo®3D计算机辅助设计(CAD)软件Creo 7.0。该软件的新功能使人工智能(AI)的功能触手可及,使仿真成为日常工作的无缝部分。
Royal Enfield产品开发的计算机辅助设计经理Adrian Marshall说:“作为Creo的长期客户,我们很高兴能早日使用Creo 7.0。 “ Creo帮助我们彻底改变了摩托车的开发,生产和维护方式。我们确信Creo将继续使我们的设计过程受益,并使我们能够提供最佳的客户拥有体验。”
为了满足CAD消费者最常用的用例,PTC将以下功能集成到了下一代产品中:
生成设计:Creo 7.0集成了Frustum®生成设计技术,使设计人员能够利用AI的强大功能,根据其工程要求和制造限制快速生成优化的设计。
由仿真驱动的设计:Creo 7.0在PTC与Ansys的战略联盟的基础上扩展,在Creo Simulation Live中引入了流体流动分析。CreoSimulation Live是一种全面的实时仿真解决方案,可使设计人员更快地进行迭代,并充满信心地进行设计。
多实体设计:Creo 7.0引入了多实体设计,这是一套新的设计工具,使用户可以更有效地完成许多设计任务,同时使零件设计更易于管理,理解和修改。
增材制造:Creo 7.0提供了增强的增材制造能力,包括对随机和自定义晶格的改进支持,使设计师在创建晶格结构时具有更大的灵活性。
核心产品增强功能:与每个版本一样,Creo 7.0为所有用户提供附加的可用性和生产力功能,包括增强的草稿功能,对2D镜像功能的改进以及对Sketcher™工具的多用户界面的改进。
Creo通过促进产品创新,促进设计重用以及用事实代替假设,来帮助设计师更快地构建更好的产品。设计人员可以从产品设计的最初阶段过渡到在单个环境中的智能互联产品。
“ Creo 7.0是我们迄今为止最具创新性的版本之一,它使客户能够利用Frustum惊人的生成设计技术和经过增强的Ansys驱动的Creo Simulation Live并进行实时流体流分析,” Brian Thompson表示, PTC CAD总经理。 “ Creo 7.0使新兴技术成为客户日常设计工作流程的一部分,有助于转变其数字产品开发流程。”
PTC最近收购了Onshape®软件即服务(SaaS)产品开发平台的开发商Onshape,这表明Creo 7.0的推出表明了该公司对通过多种交付模型提供创新技术以推动业务价值的坚定承诺。



Creo 7.o 支持最新设计
创成式设计
Creo 7.0 将革新创成式设计。根据工程和制造要求,创建最佳设计方案。
实时仿真
全新计算流体动力学功能和产品增强功能将 Creo Simulation Live 提升到更高水平。
增材制造
Creo 7.0 对 Creo 增材制造扩展包进行了改进。现在可以根据 Delaunay 算法添加晶格。
详细介绍:https://www.ptc.com/en/products/cad/creo
细节:
PTC Creo 7.0.0.0 +帮助中心Win64
发行年份/日期:2020
版本:Creo 7.0.0.0
开发人员:PTC开发人员
架构:64位
界面语言:多国语言
Tabletka:现在(Team SolidSQUAD-SSQ)

系统要求:
操作系统:Windows 7 SP1 / 8.1 / 10/2012 R2 / 2016(x64)
CPU:2.4GHz或更高
RAM:4GB或更高(64位)
显示器:支持1280 x 1024(或更高)分辨率,并具有24位或更高的色彩

主页
https://www.ptc.com/



关于激活

1、本站百度网盘下载,解压后得到PTC.Creo.7.0.0.0.Win64.iso安装镜像和_SolidSQUAD_破解文件夹
2、在安装之前,我们打开_SolidSQUAD_破解文件夹,然后运行“FillLicense.bat”。 批处理脚本附近的“PTC_D_SSQ.dat”文件,这时候 会生成一个正确的正确PTC HOSTID的许可证文件,将生成的许可证文件复制到所选文件夹(例如,E:\ Program Files \ PTC),
3、然后我们需要创建环境变量
具体操作为右键我的电脑—属性—高级系统设置—环境变量,创建系统环境变量
变量名:PTC_D_LICENSE_FILE
变量值:<PTC_D_SSQ.dat的完整路径>
4、加载PTC.Creo.7.0.0.0.Win64.iso,并双击setup运行安装,如图所示,勾选以下两个选项,点击下一步
5、这里本来是会自动加载我们刚才生成的许可证文件的,如果没有加载的话,直接将它拖放到如下位置就i行了
6、选择软件安装路径,在路径上点击以下就可以编辑了,可直接将C改为其它磁盘。去勾选数据收集的选项,如果有需要的话还可以点击自定义选择安装功能组件,点击安装
7、安装完成,退出向导。
8、将破解文件夹下的Creo 7.0.0.0文件夹内的文件夹复制到安装目录中,默认(C:\ Program Files \ PTC \ Creo 7.0.0.0 \),点击替换目标中的文件
9、最后回到破解文件夹中,运行“SolidSQUADLoaderEnabler.reg”并确认将信息添加到Windows注册表中
10、完成激活


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