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Mixed-sensitivity approach to H/sub /spl infin// control of power system oscillations employing multiple FACTS devices

机译:使用多个FACTS装置的H / sub / spl infin //控制电力系统振荡的混合灵敏度方法

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This paper demonstrates the enhancement of inter-area mode damping by multiple flexible AC transmission systems (FACTS) devices. Power system damping control design is formulated as an output disturbance rejection problem. A decentralized H/sub /spl infin// damping control design based on the mixed-sensitivity formulation in the linear matrix inequality (LMI) framework is carried out. A systematic procedure for selecting the weights for shaping the open loop plant for control design is suggested. A 16-machine, five-area study system reinforced with a controllable series capacitor (CSC), a static VAr compensator (SVC), and a controllable phase shifter (CPS) at different locations is considered. The controllers designed for these devices are found to effectively damp out inter-area oscillations. The damping performance of the controllers is examined in the frequency and time domains for various operating scenarios. The controllers are found to be robust in the face of varying power-flow patterns, nature of loads, tie-line strengths, and system nonlinearities, including device saturations.
机译:本文演示了通过多个灵活的AC传输系统(FACTS)设备增强的区域间模式阻尼。电力系统阻尼控制设计被表述为输出干扰抑制问题。基于线性矩阵不等式(LMI)框架中的混合灵敏度公式,进行了分散的H / sub / spl infin //阻尼控制设计。提出了一种选择权重来控制控制设计的开环工厂成形的系统程序。考虑了由16个机器组成的五区域研究系统,该系统在不同位置处都装有可控串联电容器(CSC),静态VAr补偿器(SVC)和可控移相器(CPS)。发现为这些设备设计的控制器可有效抑制区域间振荡。针对各种操作场景,在频域和时域中检查了控制器的阻尼性能。面对变化的功率流模式,负载性质,联络线强度以及系统非线性(包括设备饱和度),控制器具有强大的鲁棒性。

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