Altair® Pulse™
Altair Pulse 是一个低代码环境,用于构建和编排涉及来自不同来源的许多软件工具的工程工作流。 从仿真复杂系统所需的广泛工作流,到实现快速、可靠、可重复的建模、分析和优化所需的详细流程,Pulse 可确保您的团队始终拥有正确的模型,以便在正确的时间做出正确的决策。
Altair Pulse 是一个低代码环境,用于构建和编排涉及来自不同来源的许多软件工具的工程工作流。 从仿真复杂系统所需的广泛工作流,到实现快速、可靠、可重复的建模、分析和优化所需的详细流程,Pulse 可确保您的团队始终拥有正确的模型,以便在正确的时间做出正确的决策。
一个有意义的仿真模型包括正确的复杂程度和项目特定阶段所需的数据。 无论是在概念设计阶段还是深入到产品工程中,Altair 都了解跨学科的有意义模型的要求,以通过快速设计探索、权衡评估和“假设”研究来增强决策信心。
通过将计算高效的降阶模型 (ROM) 与详细的 CAE 分析相结合,Altair Pulse 在开发的每个阶段都使用可视化工作流来自动执行重复、繁琐的任务。 在功能块库的支持下,客户可以快速创建和共享一致、自定义、有指导的工作流。
从 Altair 广泛的建模和可视化工具(包括 Altair® Inspire™、Altair® SimLab® 和 Altair® HyperWorks®)中进行选择,可提供易用性、对多种物理特性的访问以及供应商中立的求解器支持。 无需打开单个工具即可使用最相关的功能,只需在 Pulse 中拖放即可设置模型并高效提取数据,从而推动可靠、高质量、客户满意产品的开发。
通过有效地协调从一个软件包传递到另一个软件包的参数和结果,Pulse 消除了错误并加速了仿真驱动的设计。 将专有脚本聚合到 Pulse 环境中,并将第三方求解器集成到仿真流程中,以确保通过增加设计协作来改善产品团队之间的沟通。
在任何复杂产品的开发过程中,设计和工程团队需要使用许多不同的工具来仿真和优化性能。 如果没有真正集成和整体的开发工作流,低效率通常会蔓延到最终设计中,这通常发生在几个平行的规程中。
一个例子是为电动汽车应用开发复杂的电动机,需要兼顾机械、电气、热和整体性能目标,以达到优化设计。 为了满足发动机的轻量化目标,可以牺牲多少刚度和耐用性? 为改善热管理而做出的改变是否会影响电机的效率?
Altair E-motor Director 通过 Pulse 功能来设置和执行多物理场研究,考虑复杂的仿真链、数据相关性和系统要求,以全面优化电驱动总成。
The term “Digital Twins” can mean different things to different people, and often involves the use of different building-block technologies depending on the specific objectives. This panel of experts will share how their technologies extend and complement Altair’s Digital Twin capabilities – in the areas of system simulation software and services, Model-Based Systems Engineering (connecting system-level requirements to system-level simulation results), and reduced-order models (ROMs).
The future of smart, connected product development is where data analytics, simulation, and high-performance computing converge to a unified discipline, sometimes referred to as Computational Science and Engineering. How far away is the future? When will broad adoption start? What does it mean for you? To answer these questions, CIMdata collaborated with Altair to survey business leaders, technologists, researchers, and the global development community for insights into our future smarter, more connected world.
Engineering adoption of AI is transforming product development yet again. AI-driven design, augmented simulation, and predictive analytics are all contributing to increase collaboration, speed up design convergence, and achieve greater product innovation. The latest release of Altair® HyperWorks® includes features like shapeAI, which quickly finds and classifies parts "by shape" inside geometry files or finite element meshes by applying machine learning.
The future of smart, connected product development is where data analytics, simulation, and high-performance computing converge to a unified discipline, sometimes referred to as Computational Science and Engineering. How far away is the future? When will broad adoption start? What does it mean for you? To answer these questions, CIMdata collaborated with Altair to survey business leaders, technologists, researchers, and the global development community for insights into our future smarter, more connected world.