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Design of Wide-Area Damping Controllers Incorporating Resiliency to Permanent Failure of Remote Communication Links

机译:广域阻尼控制器的设计,包括远程通信链路永久性故障的弹性

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摘要

The synchrophasor data provided by wide-area measurement systems have potential applications in electric power systems such as the use of these measurements as control inputs of wide-area damping controllers (WADCs) for small-signal stability enhancement. However, synchrophasor data are particularly vulnerable to cyber attacks (such as denial-of-service attacks) that can cause communication link failures in a smart grid communication network and, consequently, compromise the power system stability. In order to reduce the impact of communication failures on the performance of a WADC, this paper proposes a method to design a WADC considering robustness to multiple operating points, time delays in the communication channels and possible permanent loss of communication signals in the input and the output of the controller (which may be due, e.g., to denial-of-service cyber attacks). The performance of the designed controller is evaluated using modal analysis and nonlinear time-domain simulations in one of the IEEE benchmark systems to validate the results: the Simplified 14-Generator Model of the Southeastern Australian Power System.
机译:广域测量系统提供的同步素数据具有电力系统中的潜在应用,例如使用这些测量作为广域阻尼控制器(WADC)的控制输入,用于小信号稳定性增强。然而,同步素数据特别容易受到网络攻击的影响(例如拒绝服务攻击),其可能导致智能电网通信网络中的通信链路故障,从而损害电力系统稳定性。为了减少通信失败对WADC性能的影响,本文提出了一种将vadc考虑到多个操作点的鲁棒性的方法,通信信道中的时间延迟以及输入中可能的通信信号的永久丢失。控制器的输出(可能是由于拒绝服务网络攻击)。使用模态分析和非线性时域模拟在其中一个IEEE基准系统中进行评估设计控制器的性能,以验证结果:澳大利亚东南部的简化14发生器模型。

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