Faster than real-time simulation: methods, tools, and applications

Xiaorui Liu, Juan Ospina, Ioannis Zografopoulos, Alonzo Russell, Charalambos Konstantinou
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引用次数: 3

Abstract

Real-time simulation enables the understanding of system operating conditions by evaluating simulation models of physical components running synchronized at the real-time wall clock. Leveraging the real-time measurements of comprehensive system models, faster than real-time (FTRT) simulation allows the evaluation of system architectures at speeds faster than real-time. FTRT simulation can assist in predicting the system's behavior efficiently, thus assisting the operation of system processes. Namely, the provided acceleration can be used for improving system scheduling, assessing system vulnerabilities, and predicting system disruptions in real-time systems. The acceleration of simulation times can be achieved by utilizing digital real-time simulators (RTS) and high-performance computing (HPC) architectures. FTRT simulation has been widely used, among others, for the operation, design, and investigation of power system events, building emergency management plans, wildfire prediction, etc. In this paper, we review the existing literature on FTRT simulation and its applications in different disciplines, with a particular focus on power systems. We present existing system modeling approaches, simulation tools and computing frameworks, and stress the importance of FTRT accuracy.
比实时仿真更快:方法、工具和应用
实时仿真可以通过评估在实时挂钟上同步运行的物理组件的仿真模型来了解系统运行条件。利用综合系统模型的实时测量,比实时更快(FTRT)仿真允许以比实时更快的速度评估系统架构。FTRT仿真可以有效地预测系统的行为,从而辅助系统过程的运行。也就是说,提供的加速可以用于改进系统调度、评估系统漏洞和预测实时系统中的系统中断。利用数字实时模拟器(RTS)和高性能计算(HPC)架构可以实现仿真时间的加速。FTRT仿真已广泛应用于电力系统事件的运行、设计和调查、建筑应急管理计划、野火预测等方面。在本文中,我们回顾了FTRT仿真的现有文献及其在不同学科中的应用,并特别关注电力系统。我们介绍了现有的系统建模方法、仿真工具和计算框架,并强调了FTRT精度的重要性。
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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