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Fuzzy-based coordinated control design for AVR and PSS in multi-machine power systems

机译:多机动力系统AVR和PSS的模糊协调控制设计

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This paper presents the performance of intelligent fuzzy-based coordinated control for Automatic Voltage Regulator (AVR) and Power System Stabilizer (PSS) to prevent losing synchronism after a major sudden fault and to achieve appropriate post-fault voltage level in multi-machine power systems. The AVR and PSS gains can adaptively change to guarantee the power system stability after faults. To change in AVR and PSS gains at least one significant generator in each area is equipped with a fuzzy logic unit. The fuzzy logic unit accepts normalized deviation of terminal voltage and normalized phase difference as inputs and generates the favorable gains for AVR and PSS. The work describes the construction of appropriate fuzzy membership functions and rules for best tuning of gains. The proposed fuzzy control methodology has been applied to 11-bus 4-generator power system test case. Simulation results illustrate the effectiveness and robustness of this fuzzy-based coordinated control.
机译:本文介绍了自动电压稳压器(AVR)和电力系统稳定器(PSS)的智能模糊协调控制的性能,以防止在大型突发故障后失去同步,并在多机动力系统中实现适当的故障电压电平。 AVR和PSS增益可以自适应地改变以保证断层后的电力系统稳定性。在AVR和PSS中的变化,每个区域中至少有一个重要的发电机都配备有模糊逻辑单元。模糊逻辑单元接受终端电压的归一化偏差和标准化相位差作为输入,并产生AVR和PSS的有利增益。该工作描述了适当的模糊会员职能和规则的建设,以便获得收益的最佳调整。所提出的模糊控制方法已应用于11辆总线4发电机电力系统测试用例。仿真结果说明了基于模糊的协调控制的有效性和鲁棒性。

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