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Design of PID power system stabilizer using GA for SMIB system: Linear and non-linear approach

机译:GA用于SMIB系统的PID电源系统稳定器设计:线性和非线性方法

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In this paper, low frequency oscillations in power system under the different operating conditions have been solved through PID based power system stabilizer. The tuning of the parameters of the PSS are considered as optimization problem, and the parameters are tuned using genetic search algorithm. Here forth-order linear and non-linear model of the synchronous machine (model 1.1) which includes both the generator main field winding and the damper winding in q-axis is considered for finding out the sensitivity of electromechanical modes of single machine infinite bus system. The effectiveness of automatic voltage controller, and PID-power system stabilizer are identified through eigen value analysis and participation factor method. The non-linear simulation results show the effectiveness and capability of PID-PSS for power system stability improvement under various disturbances.
机译:本文通过基于PID的电力系统稳定器解决了不同操作条件下电力系统的低频振荡。 PSS参数的调整被认为是优化问题,并且使用基因搜索算法调整参数。在这里,包括发电机主场绕组和Q轴中的阻尼器绕组的同步机(型号1.1)的阶线的线性和非线性模型被认为是为了找出单机无限总线系统的机电模式的灵敏度。通过特征值分析和参与因子方法识别自动电压控制器和PID电力系统稳定器的有效性。非线性仿真结果表明了PID-PSS在各种干扰下电力系统稳定性改善的有效性和能力。

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