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H??? loop shaping technique based robust control design of SVC controller for power oscillations damping considering global signal

机译:H??? SVC控制器的基于环路整形技术的鲁棒控制设计,抑制全局信号

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This paper presents robust controller design for damping of inter-area mode oscillations in three machines WECC test system by Static Var Compensator (SVC) using global signal. The stabilizing signal is obtained from phasor measurement units (PMUs) located in all areas of test power system. Residue analysis is carried out to decide the best control signals for damping of critical mode. H??? loop shaping technique is used to design the damping controller. Various load models representing the different composition of loads are considered for checking the robustness of the designed controller. Robustness of the designed controller is assessed in frequency domain and via non linear time domain simulations for various contingent conditions. The performance of the designed controller is found satisfactory in damping critical mode oscillation under various critical operating conditions.
机译:本文提出了一种鲁棒的控制器设计,该控制器设计用于通过静态变量补偿器(SVC)使用全局信号来阻尼三台WECC测试系统中的区域间模式振荡。稳定信号是从位于测试电源系统所有区域中的相量测量单元(PMU)获得的。进行残渣分析以决定用于阻尼临界模式的最佳控制信号。 H???环路整形技术用于设计阻尼控制器。为了检查设计的控制器的健壮性,考虑了代表不同负荷组成的各种负荷模型。在各种偶然条件下,在频域中以及通过非线性时域仿真来评估所设计控制器的鲁棒性。发现在各种关键操作条件下阻尼临界模式振荡时,所设计控制器的性能令人满意。

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