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Robust decentralised control design using genetic algorithms in power system damping control

机译:电力系统阻尼控制中基于遗传算法的鲁棒分散控制设计

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The paper presents the design of linear robust decentralised fixed-structure power system damping controllers using genetic algorithms (GA). The designed controllers follow a classical structure consisting of a gain, a wash-out stage and two lead-lag stages. To each controller is associated a set of three parameters representing the controller gain and the controller phase characteristics. The GA searches for an optimum solution over the parameter space. Controller robustness is taken into account as the design procedure considers a prespecified set of operating conditions to be either stabilised or improved in the sense of damping ratio enhancement. A truly decentralised control design is achieved as the loop control channels are closed simultaneously, The approach is used to design SVC and TCSC damping controllers to enhance the damping of the interarea modes in a three-area six-machine power system. Local voltage and current measurements are used to synthesise remote feedback signals.
机译:本文介绍了使用遗传算法(GA)的线性鲁棒分散式固定结构电力系统阻尼控制器的设计。设计的控制器遵循经典结构,包括增益,输出级和两个超前-滞后级。与每个控制器相关的一组三个参数代表了控制器增益和控制器相位特性。 GA在参数空间中寻找最佳解决方案。考虑到控制器的鲁棒性,因为设计程序认为在阻尼比增强的意义上,一组预定的运行条件是稳定的或有所改善的。通过同时关闭回路控制通道,可以实现真正的分散控制设计。该方法用于设计SVC和TCSC阻尼控制器,以增强三区域六机动力系统中区域间模式的阻尼。本地电压和电流测量用于合成远程反馈信号。

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