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Scalable Distributed Reachability Analysis for Cyber-Physical Networked Microgrids with Communication Latency

机译:具有通信延迟的网络物理网络微电网的可扩展分布式可达性分析

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Due to the high penetration of power-electronic-interfaced distributed energy resources (DERs), a microgrid's inertia is significantly reduced, making it sensitive to cyber- and physical operational changes. When multiple microgrids are interconnected to form networked microgrids for improving system's resilience, the changes of one microgrid can quickly escalate to the overall system. In cyber-physical networked microgrids, the communication latency varies a lot. To efficiently quantify the impact of the communication latency on the dynamics of networked microgrids, a scalable distributed reachability analysis approach is presented in this paper. Reachable sets are calculated for each microgrid and then composited for the overall system dynamics evaluation. Extensive tests in the full paper will demonstrate the influence of communication latency on system dynamics and validate reachable sets can bound a system's all dynamic trajectories subject to latency changes. The test results also offer an insight into designing and managing the communication network for enhancing the system's resilience.
机译:由于电力 - 电子接口分布式能源(DERS)的高渗透,微电网的惯性显着降低,使其对网络和物理运行变化敏感。当多个MicroGrids互连以形成网络的微电网以改善系统的弹性时,一个微电网的变化可以快速升级到整个系统。在网络 - 物理网络的微电网中,通信延迟变化很大。为了有效地量化通信延迟对网络微电网动态的影响,本文提出了一种可扩展的分布式可达性分析方法。为每个微电网计算可达的组,然后对整个系统动力学评估进行计算。完整纸张中的广泛测试将展示通信延迟对系统动态的影响,并且验证可到达集可以绑定系统的所有动态轨迹受延迟变化的影响。测试结果还提供了深入了解设计和管理通信网络,以提高系统的弹性。

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