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High Reactive Power Compensation Accuracy for Cascaded H-Bridge Inverter based Decoupling Feed-Forward Current Vector Controller

机译:基于级联H桥逆变器的去耦前馈电流矢量控制器的高无功功率补偿精度

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The STATic Synchronous COMpensator (STATCOM) has gained popularity among many utilities for solving power quality problems in distribution substations. There are many types of topologies for STATCOM found in the literature, of which the Multilevel Cascaded H-bridge Inverter (MCHI) is the most adaptable and energy efficient power inverter topology. The aim of this paper is to define a control scheme and its transfer function in order to achieve low-switching frequency and high-bandwidth power control of MCHI. The controller of the proposed STATCOM system is implemented to provide vector control for reactive power or Voltage-Ampere Reactive (VAR) compensation at the Point of Common Coupling (PCC) under balanced loading conditions. To accomplish this, mathematical equations for a STATCOM system is derived in dq-coordinates based on Park's transformation. Then, the designed equations are used to calculate appropriate values of the controller's gain parameters for realizing the cascade Pulse Width Modulation (PWM) STATCOM with various voltage and current ratings. Lastly, the performance of the proposed control scheme is verified through simulation and numerical analysis using MATLAB-Simulink.
机译:静态同步补偿器(Statcom)在许多公用事业公司之间获得了普及,用于解决分配变电站中的电能质量问题。在文献中发现的STATCOM有许多类型的拓扑结构,其中多级级联H桥式逆变器(MCHI)是最适应和节能的功率逆变器拓扑。本文的目的是定义控制方案及其传递函数,以实现MCHI的低开关频率和高带宽功率控制。所提出的STATCOM系统的控制器被实施为在平衡负载条件下为共同耦合(PCC)的反应功率或电压-Ampere反应(VAR)补偿提供矢量控制。为实现这一点,STATCOM系统的数学方程在基于PARK的转换的DQ坐标中导出。然后,设计方程用于计算控制器的增益参数的适当值,以实现具有各种电压和电流的级联脉冲宽度调制(PWM)Statcom。最后,通过使用Matlab-Simulink的模拟和数值分析来验证所提出的控制方案的性能。

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