Managing Heterogeneous Simulations Using Architecture-Driven Design

Nico Vansina, B. Loyer, Yosuke Ogata
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Abstract

This paper presents an architecture-driven approach to manage heterogeneous simulations. A European automotive OEM has requested Siemens PLM Software to use its tools and process knowledge to demonstrate the value and need for architecture-driven simulation. Siemens PLM Software proposed a project to demonstrate Simcenter System Synthesis1 as a neutral framework for managing heterogeneous simulations. This includes three major capabilities: ∑ Integration of different subsystem models in the form of Simcenter Amesim2 “supercomponents” and Functional Mock-up Units (FMUs) exported from Dymola3. ∑ Plug-and-play configuration of subsystems regardless of their native software. ∑ Performant execution of heterogeneous simulation architectures with the numerical challenges of segregated strongly coupled systems The focus of the project is on the process of model integration using Functional Mock-up Units (FMUs). An electrical vehicle case-study was selected to illustrate this process.
使用架构驱动设计管理异构模拟
本文提出了一种架构驱动的方法来管理异构仿真。一家欧洲汽车OEM要求西门子PLM软件公司使用其工具和流程知识来展示架构驱动仿真的价值和需求。西门子PLM软件公司提出了一个项目来演示Simcenter System Synthesis1作为管理异构仿真的中立框架。这包括三个主要功能:以Simcenter Amesim2“超级组件”和从Dymola3导出的功能实体单元(fmu)的形式对不同子系统模型进行∑集成。∑即插即用的子系统配置,无论其原生软件如何。异构仿真架构的高性能执行与分离强耦合系统的数值挑战项目的重点是使用功能模型单元(fmu)进行模型集成的过程。本文选择了一个电动汽车案例来说明这一过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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