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Approximated Stability Analysis of Bi-modal Hybrid Co-simulation Scenarios

机译:双峰混合协同仿真场景的近似稳定性分析

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Co-simulation is a technique to orchestrate multiple simulators in order to approximate the behavior of a coupled system as a whole. Simulators execute in a lockstep fashion, each exchanging inputs and output data points with the other simulators at pre-accorded times. In the context of systems with a physical and a cyber part, the communication frequency with which the simulators of each part communicate can have a negative impact in the accuracy of the global simulation results. In fact, the computed behavior can be qualitatively different, compared to the actual behavior of the original system, laying waste to potentially many hours of computation. It is therefore important to develop methods that answer whether a given communication frequency guarantees trustworthy co-simulation results. In this paper, we take a small step in that direction. We develop a technique to approximate the lowest frequency for which a particular set of simulation tools can exchange values in a co-simulation and obtain results that can be trusted.
机译:协同仿真是一种编排多个仿真器的技术,以使整个耦合系统的行为近似。模拟器以锁步方式执行,每个模拟器都在预先约定的时间与其他模拟器交换输入和输出数据点。在具有物理部分和网络部分的系统的上下文中,每个部分的仿真器进行通信的通信频率可能会对全局仿真结果的准确性产生负面影响。实际上,与原始系统的实际行为相比,所计算的行为可能在质量上有所不同,从而浪费了许多潜在的计算时间。因此,重要的是要开发出一种方法,以回答给定的通信频率是否能保证可信的协同仿真结果。在本文中,我们朝着这个方向迈出了一小步。我们开发了一种近似最低频率的技术,特定的一组模拟工具可以在最低频率下交换共同模拟中的值并获得值得信赖的结果。

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