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Distributed frequency regulation in the presence of communication failure

机译:存在通信故障时的分布式频率调节

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This paper proposes a resilient architecture for distributed frequency regulation (DFR) during communication failures. The DFR algorithm relies on the communication network for exchanging information between prosumers and obtaining stabilizing control actions, which can bring overall frequency deviations to nominal. Failures in the communication network can jeopardize the functionality of DFR and lead to frequency stability problems. This paper explores the connection between system-wide frequency stability and communication failures and identifies certain topological conditions on the cyber-physical network itself, under which DFR can restore frequency stability through a stressed communication network. The proposed architecture is simulated on a practical power grid and the results indicate that it is indeed resilient under the single communication failure scenario.
机译:本文提出了一种在通信故障期间用于分布式频率调节(DFR)的弹性体系结构。 DFR算法依靠通信网络在生产者之间交换信息并获得稳定的控制动作,这可以使总的频率偏差达到标称值。通信网络中的故障可能会损害DFR的功能并导致频率稳定性问题。本文探讨了系统范围的频率稳定性和通信故障之间的联系,并确定了网络物理网络本身的某些拓扑条件,在这种拓扑条件下,DFR可以通过压力通信网络来恢复频率稳定性。所提出的体系结构是在实际的电网上进行仿真的,结果表明,它在单次通信故障情况下确实具有弹性。

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