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Co-ordinated Design of AVR-PSS Using Multi Objective Genetic Algorithm

机译:基于多目标遗传算法的AVR-PSS协同设计

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Automatic Voltage Regulator (AVR) regulates the generator terminal voltage by controlling the amount of current supplied to the generator field winding by the exciter. Power system stabilizer (PSS) is installed with AVR to damp the low frequency oscillations in power system by providing a supplementary signal to the excitation system. Optimal tuning of AVR controller and PSS parameters is necessary for the satisfactory operation of the power system. When applying tuning method to obtain the optimal controller parameters individually, AVR improves the voltage regulation of the system and PSS improves the damping of the system. Simultaneous tuning of AVR and PSS is necessary to obtain better both voltage regulation and oscillation damping in the system. This paper deals with the optimal tuning of AVR controller and PSS parameters in the synchronous machine. The problem of obtaining the optimal controller parameters is formulated as an optimization problem and Multi-Objective Genetic Algorithm (MOGA) is applied to solve the optimization problem. The suitability of the proposed approach has been demonstrated through computer simulation in a Single Machine Infinite Bus (SMIB) system.
机译:自动电压调节器(AVR)通过控制励磁机提供给发电机励磁绕组的电流量来调节发电机端子电压。电力系统稳定器(PSS)随AVR一起安装,通过向励磁系统提供补充信号来抑制电力系统中的低频振荡。 AVR控制器和PSS参数的最佳调整对于电力系统的令人满意的运行是必要的。当应用调整方法分别获得最佳控制器参数时,AVR改善了系统的电压调节能力,而PSS改善了系统的阻尼。为了获得更好的电压调节和系统中的振荡阻尼,必须同时调整AVR和PSS。本文研究了同步电机中AVR控制器和PSS参数的优化调整。将获得最优控制器参数的问题表述为优化问题,并应用多目标遗传算法(MOGA)解决该优化问题。通过在单机无限总线(SMIB)系统中进行计算机仿真,已证明了该方法的适用性。

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