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Methods for real-time simulation of Cyber-Physical Systems: application to automotive domain

机译:网络物理系统的实时仿真方法:在汽车领域的应用

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The design, development and validation of Cyber-Physical Systems (CPS) is increasingly relying on real-time simulation. In many domains, such as automotive powertrain engineering, there exists a variety of precise physical models, but whose computational complexity leads engineers to perform model reductions in order to fit real-time execution requirements for Hardware-in-the-Loop (HiL) simulation. The resulting validity domain reduction is conflicting with the growing need for more precise models in validation stages. In this paper we list several alternative methods to succeed in real-time simulation of complex physical models and describe how we applied these to an industrial use case. This case study aims at running, on a 6-core PC, a real-time Diesel engine simulator including phenomenological combustion models.
机译:网络物理系统(CPS)的设计,开发和验证越来越依赖实时仿真。在许多领域,例如汽车动力总成工程,存在各种精确的物理模型,但是其计算复杂性使工程师不得不进行模型简化,以适应硬件在环(HiL)仿真的实时执行要求。随之而来的有效性域减少与在验证阶段对更精确模型的不断增长的需求相矛盾。在本文中,我们列出了在复杂物理模型的实时仿真中成功的几种替代方法,并描述了如何将其应用于工业用例。本案例研究旨在在6核PC上运行包括现象学燃烧模型的实时柴油发动机模拟器。

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