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A novel methodology to enhance transient stability using SVC with fuzzy logic control

机译:使用带有模糊逻辑控制的SVC增强瞬态稳定性的新方法

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The existing power transmission capabilities can be flexibly controlled and enhanced with the help of new technology called Flexible AC Transmission System (FACTS). This power electronics based technology can be used individually or in co-ordination with other controllers. Static VAR Compensator (SVC) is a shunt connected FACTS device, used for voltage control and for reactive power compensation. In the existing system, the SVC uses a PI controller, which though simpler and cheaper, not suitable for non-linear characteristics. In order to overcome this, the controller is designed as a combination of both PI controller and Fuzzy Logic Controller, thereby gaining the joint advantages of both types. The designed model has been tested in a 2 machine 3 bus test system using MATLAB software. The simulation results show that the new controller logic gives better and quick performance compared to the other types.
机译:现有的电力传输功能可以借助称为“柔性交流传输系统”(FACTS)的新技术灵活控制和增强。这种基于电力电子技术的技术可以单独使用,也可以与其他控制器配合使用。静态无功补偿器(SVC)是并联连接的FACTS设备,用于电压控制和无功功率补偿。在现有系统中,SVC使用PI控制器,该控制器虽然更简单,更便宜,但不适合非线性特性。为了克服这个问题,控制器被设计为PI控制器和Fuzzy Logic控制器的组合,从而获得了两种类型的共同优势。使用MATLAB软件在2机3总线测试系统中对设计的模型进行了测试。仿真结果表明,与其他类型的控制器相比,新的控制器逻辑具有更好,更快速的性能。

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