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首页> 外文期刊>International journal of electrical power and energy systems >Design of adaptive wide-area damping controller based on delay scheduling for improving small-signal oscillations
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Design of adaptive wide-area damping controller based on delay scheduling for improving small-signal oscillations

机译:基于延迟调度改进小信号振荡的自适应广域阻尼控制器的设计

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摘要

The main aim of this paper is to compensate the delays resulted from communication links transmitting widearea measurement signals in a new large-scale power system. The proposed controller is based on adaptive delay compensation which is able to handle the uncertainty arising from the phase delay by means of scheduling the delay's value. In this design, further to compensation of WAMS's delays, the delay due to internal structure of closed-loop system is also modeled, and by using synthesis H infinity/H2 technique, its robustness has been evaluated by defining an objective function. Then, by means of small-signal stability analysis, a wide-area damping controller has been employed for coordination of FACTS devices including STATCOM and HVDC with the controller of rotor-side-convertor (RSC) in DFIG. The simulations have been implemented on 8-area power system including wind farms and FACTS devices through different scenarios.
机译:本文的主要目的是补偿通信链路导致延迟导致的延迟,在新的大型电力系统中传输WiveArea测量信号。 所提出的控制器基于自适应延迟补偿,其能够通过调度延迟值来处理由阶段延迟引起的不确定性。 在这种设计中,进一步弥补WAMS的延迟,由于闭环系统的内部结构引起的延迟也是建模的,并且通过使用合成H Infinity / H2技术,通过定义目标函数来评估其鲁棒性。 然后,通过小信号稳定性分析,已经采用广域阻尼控制器,用于协调包括Statcom和HVDC的事实设备,其中DFIG中的转子侧转换器(RSC)控制器。 通过不同场景在包括风电场和事实设备的8区电力系统上实施了模拟。

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