Selecting the Input-Output Signals for Fault-Tolerant Wide-Area Damping Control Design

M. E. Bento, R. Ramos
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引用次数: 3

Abstract

The operation of power systems requires requirements to ensure a continuous and secure supply of electricity. One of the requirements is the appropriate damping of low-frequency oscillation modes in small-signal stability studies. The expansion and uncertainties of power systems combined with the development of Wide-Area Measurement Systems led to the development of Wide-Area Damping Controllers (WADCs) whose measures are derived from Phasor Measurement Units (PMU) measures. Possible failures in the transmission of data packets from PMUs can compromise the proper operation of the WADC and thus compromise the stability of the system. This research proposes an optimization model for the WADC design considering the minimization of the input-output signals of the controller and the robustness of the loss of a communication channel. Case studies are presented and discussed using a set of Nature-Inspired Meta-Heuristic Algorithms applied to the proposed optimization method.
容错广域阻尼控制中输入输出信号的选择
电力系统的运行要求确保电力的持续和安全供应。其中一个要求是在小信号稳定性研究中对低频振荡模式进行适当的阻尼。电力系统的扩大性和不确定性与广域测量系统的发展相结合,导致了广域阻尼控制器(wadc)的发展,其测量来源于相量测量单元(PMU)的测量。从pmu传输数据包时可能出现的故障会影响WADC的正常运行,从而影响系统的稳定性。本研究提出了一种考虑控制器输入输出信号最小化和通信信道损耗鲁棒性的WADC优化设计模型。使用一组自然启发的元启发式算法对所提出的优化方法进行了案例研究和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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