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SCCO: A State-Caching-Based Coagulation Platform for Cybor-Physical Power System Evaluation

机译:SCCO:一种用于Cybor-Meancess Power System评估的基于状态缓存的凝固平台

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摘要

Existing cosimulation techniques for cyber-physical power systems (CPPSs) suffer from a tradeoff between simulation accuracy and calculation speed. One of the most critical issues influencing the simulation performance is the method of synchronization between the two simulators. In this article, to efficiently solve the data interchange problem for asynchronous simulators, a state-caching-based synchronization mechanism is proposed to balance accuracy and efficiency. A state-caching module is designed to store the system's status at critical moments and backtrack the simulation process when necessary; thus, nonessential data interactions are reduced. In addition, to solve the problems of processing multiple concurrent events and node mapping in CPPS modeling, a network boundary module is proposed that distributes and aggregates interface packets in accordance with the number of devices. Based on the above method, a State-Caching-based COsimulation (SCCO) platform is designed for CPPS evaluation, and the effectiveness and advantages of the proposed method are demonstrated based on simulated results for cyber-physical events.
机译:用于网络物理电力系统(CPPS)的现有的辅助技术遭受模拟精度和计算速度之间的权衡。影响模拟性能的最关键问题之一是两种模拟器之间同步的方法。在本文中,为了有效地解决异步模拟器的数据交换问题,提出了一种基于状态缓存的同步机制来平衡精度和效率。一个状态缓存模块旨在将系统的状态存储在关键时刻并在必要时返回仿真过程;因此,减少了非必要数据交互。另外,为了解决CPPS建模中处理多个并发事件和节点映射的问题,提出了一种网络边界模块,其根据设备的数量分发和聚合接口分组。基于上述方法,设计了一种基于状态缓存的辅助(SCCO)平台用于CPPS评估,并且基于用于网络物理事件的模拟结果来证明所提出的方法的有效性和优点。

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