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SimConnect and SimTalk for distributed cyber-physical system simulation

机译:SimConnect和SimTalk用于分布式电子物理系统仿真

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Real-time embedded and cyber-physical systems challenge simulation disciplines due to the heterogeneous tools used to model components in the system exploration and design phases. Termed "heterogeneity," the mixed-model problem challenges multi-simulator coordination, where event causality must be preserved among simulators with different models of computation, signals, criteria for time advancement, and levels of abstraction. SimConnect and SimTalk enable heterogeneous, distributed, hardware/software co-simulation with a simplified backplane approach, emphasizing the simulation of software interacting with simulated world-model electrical, mechanical, and physical effects. The structure of SimConnect and SimTalk is described, adhering to the properties of a Kahn Process Network. Application of the tools to the coordination of three different simulators (TExaS, Ngspice, and Simulink) is presented to simulate closed-loop, hardware/software-based, Proportional-lntegral-Derivative/Pulse-Width-Modulated control of a direct current motor. Results demonstrate agreement among simulator coordinations with configurable tradeoffs in speed versus accuracy.
机译:由于在系统探索和设计阶段中用于对组件进行建模的异构工具,因此实时嵌入式和网络物理系统对仿真学科提出了挑战。被称为“异质性”的混合模型问题挑战了多模拟器协调,其中必须在具有不同计算模型,信号,时间提前标准和抽象级别的模拟器之间保留事件因果关系。 SimConnect和SimTalk通过简化的背板方法实现了异构,分布式,硬件/软件的协同仿真,强调了软件仿真与模拟的世界模型电气,机械和物理效果相互作用的效果。描述了SimConnect和SimTalk的结构,并遵循了Kahn Process Network的属性。介绍了该工具在三种不同模拟器(TExaS,Ngspice和Simulink)的协调中的应用,以模拟闭环,基于硬件/软件的比例积分微分/脉宽调制的直流电动机控制。结果表明,仿真器协调之间在速度与准确性之间可配置的折衷之间达成了一致。

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