电力系统中集中与分散振动阻尼控制器的比较

Faisal Jamsheed, Sheikh Javed Iqbal
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引用次数: 0

摘要

本文设计了静态无功补偿器的补充控制器,以增强区域间振荡模式的阻尼。根据系统的可控性和可观测性选择合适的SVC位置和稳定反馈信号。广域信号,需要有效地阻尼区域间振荡,引入几乎不可避免的时间延迟,可以抵消控制器的有效性,因此,延迟补偿是这种应用所必需的。在传输广域信号时,由于时延导致的振荡阻尼恶化,抵消了使用最可观察反馈信号的优势。此外,采用广域阻尼控制增加了控制器的成本。因此,研究了通信延迟对振荡阻尼的影响,并与采用不易观测的局部信号的分散控制进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison between Centralized and Decentralized Oscillation Damping Controllers in Power Systems
In this paper, a supplementary controller for static var compensator is designed to enhance the damping of inter-area oscillation mode. Proper SVC location and stabilizing feedback signal are selected on the basis of controllability, and observ-ability, respectively. Wide-area signals, required for effective damping of inter-area oscillations, introduce practically unavoid-able time-delay that can offset effectiveness of a controller and, therefore, delay compensation is required for such applications. Deterioration of oscillation damping due to time-delay, while transporting wide-area signals, negates the advantages of using the most observable feedback signal. Moreover, employing wide-area damping control adds to the cost of the controller. Therefore, the impact of communication delay on oscillation damping is investigated and comparison is made with a decentralised control, which employs less-observable local signal.
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