考虑广域信号时滞的电力系统SVC鲁棒附加阻尼控制器设计

Fang Liu, R. Yokoyama, Yicheng Zhou, Yong Li, Min Wu
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引用次数: 9

摘要

本文提出了一种新的静态无功补偿(SVC)鲁棒附加阻尼控制器(RADC),在考虑广域信号时滞的情况下改善电力系统区域间振荡的阻尼性。首先,由于需要考虑广域测量系统(WAMS)中远程信号传输和处理带来的时延影响,将SVC附加阻尼控制器的设计表述为时延输出反馈控制问题。然后基于直接反馈线性化(DFL)理论、鲁棒控制理论和状态观测器,采用自由加权矩阵法和极点放置法设计控制器参数。最后,以四机两区电力系统为例,仿真结果表明,阻尼控制器不仅能明显抑制区域间低频振荡,而且对各种工况和时延都有较强的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SVC robust additional damping controller design for power system with considering time-delay of wide-area signals
This paper proposes a new static var compensator (SVC) robust additional damping controller (RADC) to improve the damping of power system inter-area oscillation with considering time delay of wide-area signals. Firstly, since the impact of time delay introduced by remote signal's transmission and processing in wide-area measurement systems (WAMS) has to be considered, the design of SVC additional damping controller is formulated as the time-delay output feedback control problem. Then based on the direct feedback linearization (DFL) theory, robust control theories and state observer, the parameters of controller are designed by employed the free-weighting matrices method and pole placement method. Finally, taking the four-machine two-area power system as an example, the simulation results demonstrate the damping controller not only inhibits inter-area low-frequency oscillation evidently, but also is robust to various operating conditions and time delay.
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