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Synchronized Versus Non-Synchronized Feedback for Speed-Based Wide-Area PSS: Effect of Time-Delay

机译:基于速度的广域PSS的同步与非同步反馈:时间延迟的影响

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Wide-area power system stabilizers (WAPSSs) based on time-synchronized signals are known to be relatively effective in damping inter-area oscillations. However, the use of wide-area signals introduces time-delay in the feedback loop due to the time taken in fetching the feedback information. In general, delays in the feedback loop are detrimental to the performance of the controller and may lead to instability if the control is not sufficiently robust to tolerate the delay variation. It may be the case that one opts for using non-synchronized signals (not time-synchronized) for WAPSS. This paper investigates and compares the effect of delay in synchronized and non-synchronized feedback-based WAPSS. The analysis is carried out using eigenvalue computation for time-delay systems and applied to two study systems. It is shown that non-synchronized signals are less sensitive to delay from the systems stability viewpoint even though comparable damping can be achieved.
机译:已知基于时间同步信号的广域电力系统稳定器(WAPSS)在阻尼区域间振荡方面相对有效。但是,由于获取反馈信息需要花费时间,因此使用广域信号会在反馈环路中引入时间延迟。通常,如果控制的鲁棒性不足以容忍延迟变化,则反馈回路中的延迟会损害控制器的性能,并可能导致不稳定。可能会出现这样的情况:选择将非同步信号(非时间同步)用于WAPSS。本文研究并比较了基于同步和非同步反馈的WAPSS中延迟的影响。该分析使用时延系统的特征值计算进行,并应用于两个研究系统。从系统稳定性的角度来看,即使可以实现相当的阻尼,非同步信号对延迟的敏感性也较低。

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