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Adaptive Time Delay Compensator (ATDC) Design for Wide-Area Power System Stabilizer

机译:广域电力系统稳定器的自适应延时补偿器(ATDC)设计

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摘要

Wide-area power system stabilizer (WPSS) is one of the most potentially effective approaches to damp interarea low frequency oscillations in power systems. When WPSS is implemented in a real project, emphasis should be put on feedback signal delay problem. In order to intensively study the delay of phasor measurement unit data, field tests have been carried out in Guizhou power grid (GZPG), and results show that, in the long-term, the delay might change remarkably under some circumstances, such as when route switches or communication load increases. Therefore, this paper proposes an adaptive time delay compensation method to deal with such kind of delay. Bounded random delay is divided into several intervals and compensators are designed for each delay interval. Then appropriate compensators will be selected according to the delay measured online, based on the switching rules that is also demonstrated in this paper. The delay used here is the average delay before the compensator switching. The proposed compensator is demonstrated in a two area power system. Numerical simulation results show the effectiveness and feasibility of the proposed adaptive compensator. A comparison with conventional methods is also presented. Finally, the proposed method is validated on GZPG based on real-time digital simulations.
机译:广域电力系统稳定器(WPSS)是抑制电力系统中区域间低频振荡的最潜在有效方法之一。在实际项目中实现WPSS时,应重点关注反馈信号延迟问题。为了深入研究相量测量单位数据的时延,在贵州电网进行了现场测试,结果表明,从长远来看,时延在某些情况下可能会发生显着变化,例如路由交换机或通信负载增加。因此,本文提出了一种自适应时延补偿方法来处理这种时延。有界随机延迟分为几个间隔,并且为每个延迟间隔设计了补偿器。然后,根据本文还演示的切换规则,根据在线测量的延迟选择合适的补偿器。此处使用的延迟是补偿器切换之前的平均延迟。拟议的补偿器在两区电力系统中得到了证明。数值仿真结果表明了所提出的自适应补偿器的有效性和可行性。还提出了与常规方法的比较。最后,基于实时数字仿真,在GZPG上对该方法进行了验证。

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