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Distributed Load Sharing Under False Data Injection Attack in an Inverter-Based Microgrid

机译:基于逆变器的微电网在虚假数据注入攻击下的分布式负载分担

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摘要

In microgrids, distributed load sharing plays an important role in maintaining the supply-demand balance of power. Because false data injection (FDI) is one of the crucial threats faced by future microgrids, the study of the impact of FDI on distributed load sharing is both of theoretical merit and practical value. In this paper, we consider the distributed load sharing problem of the microgrids operating in autonomous mode under FDI. Each bus is assumed to be equipped with an agent. Under a well-developed distributed load sharing protocol based on multiagent systems, we first construct an FDI attack model, where the attacker is capable of injecting false data into the bus agents. Then, a utilization level is introduced for coordinating generators, and its variation is evaluated in the presence of FDI attacks with given injection strategies. The stable region of the microgrid is defined, and conditions are given to determine stability. Finally, theoretical results are validated on the Canadian urban distribution system.
机译:在微电网中,分布式负载分担在维持电力供需平衡方面起着重要作用。由于错误数据注入(FDI)是未来微电网面临的关键威胁之一,因此研究FDI对分布式负载分担的影响既具有理论价值,也具有实用价值。在本文中,我们考虑了在FDI下以自主模式运行的微电网的分布式负载分担问题。假定每个总线都配备了一个代理。在基于多代理系统的发达的分布式负载共享协议下,我们首先构建一个FDI攻击模型,攻击者可以在该模型中向总线代理注入错误数据。然后,引入了用于协调发电机的利用率级别,并在存在给定注入策略的FDI攻击下评估了其变化。定义了微电网的稳定区域,并给出了确定稳定性的条件。最后,对加拿大城市分配系统的理论结果进行了验证。

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