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Altair® Twin Activate® 应用

随着对更智能、更互联、更可持续的产品需求的增加,企业需要能够在整个系统级别进行高效仿真的数字孪生工具。

Twin Activate 的多学科仿真功能可帮助公司全面开发智能、复杂的机电一体化系统,同时实现简化的产品开发工作流和不同工程领域之间的协作。 Twin Activate 打破了机械子系统、电气子系统、控制子系统、电子子系统、软件、硬件在环、数据分析等之间的孤岛。

了解更多有关 Twin Activate 的信息

数字孪生

将 Twin Activate 作为 Altair 开放且灵活的数字孪生平台的核心,可轻松地将高保真模型与使用 3D+1D+0D 技术(即使用 CAD 几何结构 + 框图 + 方程)构建的降阶模型 (ROM) 结合起来。

阅读:通过数字孪生提高 MBD 方案有效性白皮书

集成多学科系统

集成机械、电气和控制器子系统(包括传感器和执行器)的模型,将您的机电一体化产品作为系统体系全面仿真。 通过功能性模型接口 (FMI) 开放标准,与 Altair(如 Altair® MotionSolve®Altair® Flux®)或第三方的其他 CAE 工具交换模型和/或协同仿真。

阅读:施耐德电气客户案例

电动汽车 (EV) 系统

仿真各种车辆类型的电力传动系统,将机械工厂模型与电机、电池和控制器以及真实的驾驶循环相结合。 然后,优化电动汽车的整体性能(可选择与 Altair® HyperStudy® 结合使用)。

阅读:保时捷和 Altair 技术文档

一维热流体动力学系统

使用 1D 建模和仿真(而不是仅使用 3D CFD)对热流体系统动力学进行建模,以明显更快的速度产生几乎同样准确的结果,以便在更短的时间内进行更多的设计探索和优化性能。

阅读:Cimbali Group 客户案例

液压系统

创建详细的液压回路和驱动系统,作为多学科系统仿真的一部分,特别适用于重型机械和农业设备,结合多体系统颗粒材料系统使用。

观看: 重型设备仿真

基于模型的系统工程 (MBSE)

将产品级系统仿真与产品的功能需求联系起来,以便您的系统模型成为虚拟产品开发活动的权威事实来源 (AST)。

观看:NAVAIR 客户案例

基于项目的学习

机电一体化教育套件

使用 Altair 合作伙伴 ACROME 的硬件套件,以及 Altair 提供的免费数字孪生仿真模型和课程材料。

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特色资源

Sensor Accuracy Drives Performance - Model-Based Development Improves E-Motor Reliability and Efficiency

High accuracy sensors and encoders are integral components of an e-motor drive, greatly impacting the quality and efficiency on the system. A purpose-driven simulation approach is needed to account for all the physical interdependencies within these complex multi-domain systems. Lenord + Bauer worked with Altair to develop a system simulation process for their high-accuracy encoders to understand their impact on the quality and efficiency of the system.

客户案例
Future.Industry

Open Integration of Digital Twins and Model Based Systems Engineering (MBSE)

Dr. Cynthia Dean is the Director of Model Based Systems Engineering (MBSE) Training and Solution Development at Belcan. She will present a future facing vision for integrating model-based systems engineering, architecture, and simulation with digital twin technology in modern systems engineering. The presentation will highlight the major Industry challenges in adopting these technologies and how Belcan and Altair have joined forces to uniquely address the challenges via an open Integration platform.

Future.Industry

Human Plus Machine: How Sarcos is Revolutionizing the Future of Work with Industrial Robotics

With the prospect of increasing labor shortages among a wide variety of industries, combined with the significant costs of occupational injuries and the ever-increasing pressure to increase productivity, leading robotics company, Sarcos is in a unique position to deploy industrial robotics designed to increase productivity while eliminating injuries, by augmenting rather than replacing human workers.

Chris Beaufait, COO of Sarcos, discusses the current robotics landscape, why automation is not the right solution to the problems industries are facing, how Sarcos and its product lineup - including the full body, fully powered Guardian XO exoskeleton - will play a critical role in defining the workforce of tomorrow, and his vision for the robotics industry over the next five to 10 years.

Global ATC
propeller

Achieving Aerospace Design Confidence with Model-based Systems Engineering

Reducing aircraft design and development time is critical for all aircraft manufacturers, from urban air mobility and electric aircraft startups to military to commercial OEMs. In order to fully understand and optimize the complex systems of systems required in modern aircraft, aerospace engineers leverage a simulation method called Model-based Systems Engineering (MBSE). MBSE allows the evaluation of various types of vehicle systems to determine which best meet the mission requirements.

技术文档
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