Utilizing Wide-Area Signals for off-center SVCs to damp interarea oscillations

R. Goldoost, Yateendra Mishra, G. Ledwich
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引用次数: 10

Abstract

Wide-Area Measurement Systems (WAMS) provide the opportunity of utilizing remote signals from different locations for the enhancement of power system stability. This paper focuses on the implementation of remote measurements as supplementary signals for off-center Static Var Compensators (SVCs) to damp inter-area oscillations. Combination of participation factor and residue method is used for the selection of most effective stabilizing signal. Speed difference of two generators from separate areas is identified as the best stabilizing signal and used as a supplementary signal for lead-lag controller of SVCs. Time delays of remote measurements and control signals is considered. Wide-Area Damping Controller (WADC) is deployed in Matlab Simulink framework and is tested under different operating conditions. Simulation results reveal that the proposed WADC improve the dynamic characteristic of the system significantly.
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利用离中心SVCs的广域信号抑制区域间振荡
广域测量系统(WAMS)提供了利用来自不同位置的远程信号来增强电力系统稳定性的机会。本文的重点是实现远程测量作为偏心静态无功补偿器(SVCs)的补充信号来抑制区域间振荡。采用参与因子与残差相结合的方法选择最有效的稳定信号。将不同区域的两台发电机转速差作为最优稳定信号,作为SVCs超前滞后控制器的补充信号。考虑了远程测量和控制信号的时滞。在Matlab Simulink框架中部署了广域阻尼控制器(WADC),并在不同的工作条件下进行了测试。仿真结果表明,所提出的WADC显著改善了系统的动态特性。
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