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Model based PI power system stabilizer design for damping low frequency oscillations in power systems

机译:基于模型PI电力系统稳定器设计,用于减震电力系统低频振荡

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This paper explores a two-level control strategy by blending local controller with centralized controller for the low frequency oscillations in a power system. The proposed control scheme provides stabilization of local modes using a local controller and minimizes the effect of inter-connection of sub-systems performance through a centralized control. For designing the local controllers in the form of proportional-integral power system stabilizer (PI-PSS), a simple and straight forward frequency domain direct synthesis method is considered that works on use of a suitable reference model which is based on the desired requirements. Several examples both on one machine infinite bus and multi-machine systems taken from the literature are illustrated to show the efficacy of the proposed PI-PSS. The effective damping of the systems is found to be increased remarkably which is reflected in the time-responses; even unstable operation has been stabilized with improved damping after applying the proposed controller. The proposed controllers give remarkable improvement in damping the oscillations in all the illustrations considered here and as for example, the value of damping factor has been increased from 0.0217 to 0.666 in Example 1. The simulation results obtained by the proposed control strategy are favourably compared with some controllers prevalent in the literature. (C) 2018 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文通过将本地控制器与集中式控制器混合在电力系统中的低频振荡中混合本地控制器来探讨两个级别的控制策略。所提出的控制方案使用本地控制器提供局部模式的稳定性,并通过集中控制最大限度地减少子系统性能间间的效果。为了以比例积分电力系统稳定器(PI-PSS)的形式设计本地控制器,认为简单且直接向前的频域直接合成方法是用于基于所需要求的合适参考模型的工作。在一台机器无限总线和从文献中取出的多机系统的几个例子示出了显示出所提出的PI-PSS的功效。发现系统的有效阻尼显着增加,这在时响应中反映出来;甚至在应用所提出的控制器后,甚至不稳定的操作已经通过改进的阻尼而稳定。所提出的控制器在这里考虑的所有插图中抑制振荡的显着改善,例如,在实施例1中,阻尼因子的值增加到0.0217至0.666。通过拟议的控制策略获得的模拟结果与一些控制器在文献中普遍存在。 (c)2018 ISA。 elsevier有限公司出版。保留所有权利。

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