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A controller design method for 3 phase 4 wire grid connected VSI with LCL filter

机译:带LCL滤波器的三相四线并网VSI控制器设计方法

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Closed loop control of a grid connected VSI requires line current control and dc bus voltage control. The closed loop system comprising PR current controller and grid connected VSI with LCL filter is a higher order system. Closed loop control gain expressions are therefore difficult to obtain directly for such systems. In this work a simplified approach has been adopted to find current and voltage controller gain expressions for a 3 phase 4 wire grid connected VSI with LCL filter. The closed loop system considered here utilises PR current controller in natural reference frame and PI controller for dc bus voltage control. Asymptotic frequency response plot and gain bandwidth requirements of the system have been used for current control and voltage controller design. A simplified lower order model, derived for closed loop current control, is used for the dc bus voltage controller design. The adopted design method has been verified through experiments by comparison of the time domain response.
机译:电网连接的VSI的闭环控制需要线电流控制和直流总线电压控制。包括PR电流控制器和带有LCL滤波器的并网VSI的闭环系统是一个高阶系统。因此,对于这样的系统,很难直接获得闭环控制增益表达式。在这项工作中,采用了一种简化的方法来查找连接了VSI和LCL滤波器的3相4线栅的电流和电压控制器增益表达式。这里考虑的闭环系统利用自然参考系中的PR电流控制器和PI控制器进行直流总线电压控制。系统的渐近频率响应图和增益带宽要求已用于电流控制和电压控制器设计。为闭环电流控制导出的简化的低阶模型用于直流总线电压控制器设计。通过比较时域响应,通过实验验证了所采用的设计方法。

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