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Designing and simulation of SVC controller using coordinate transformation and Integral droop method

机译:使用坐标变换和整体下垂方法的SVC控制器的设计与仿真

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To avoid the complexity' without sacrificing the accuracy in results and efficiency in performance of the static VAr compensator, a new simple design of SVC controller is being proposed in this paper. It is suggested that instead of using complex methods in the measuring system and voltage regulator of the SVC controller some simple but accurate methods can be employed. In this paper the Co-ordinate Transformation method is suggested for the measurement system and Integral droop method for the voltage regulator of the SVC controller. To explain the operation and design of these methods a Simulink model of SVC controller is presented in this paper. SimPowerSystems block set in MATLAB Simulink is used for the analysis of the response of SVC controller when it is connected to high voltage transmission line.
机译:为了避免复杂性'而不牺牲静态VAR补偿器性能的结果和效率的准确性,在本文中提出了一种新的简单设计SVC控制器。建议可以采用SVC控制器的测量系统和电压调节器中使用复杂方法,而是可以采用简单但精确的方法。本文建议为SVC控制器的电压调节器的测量系统和整体下垂方法建议进行统坐标转换方法。为了解释这些方法的操作和设计,本文提出了SVC控制器的Simulink模型。 Matlab Simulink中的SimPowersystems块集合用于分析SVC控制器连接到高压传输线时的响应。

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