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Stability of an adaptive switched controller for power system oscillation damping using remote synchrophasor signals

机译:使用远程同步相量信号的电力系统振荡阻尼自适应开关控制器的稳定性

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This paper is concerned with the stability of an adaptive switched controller for interarea power system oscillation damping using remote signals. These signals introduce variable latency into the damping control system due to phasor processing and communication network delays. In previous work, we designed an adaptive controller that dynamically switches among different compensators depending on the latency of the incoming measurements. To prevent switching instability, a long reset time was implemented. We demonstrated the stability of the adaptive system using simulations. In this work, we use the concept of average dwell time (ADT) of switched control systems to develop a sufficient condition that guarantees the stability of our adaptive switching algorithm. Using this condition, we formulate a feasibility problem to compute the minimum average dwell time for the set of designed compensators. We apply the algorithm to a thyristor-controlled series compensator on a two-area power system and show that the adaptive controller is stable for time-varying latency.
机译:本文关注的是使用远程信号进行区域间电力系统振荡阻尼的自适应开关控制器的稳定性。由于相量处理和通信网络延迟,这些信号将可变等待时间引入阻尼控制系统。在以前的工作中,我们设计了一个自适应控制器,该控制器根据传入测量的延迟在不同的补偿器之间动态切换。为防止开关不稳定,实施了较长的复位时间。我们通过仿真演示了自适应系统的稳定性。在这项工作中,我们使用开关控制系统的平均停留时间(ADT)的概念来开发足够的条件,以保证我们自适应开关算法的稳定性。使用此条件,我们制定了一个可行性问题,以计算一组设计补偿器的最小平均停留时间。我们将该算法应用于两区域电力系统中晶闸管控制的串联补偿器,并证明了自适应控制器对于时变时延是稳定的。

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