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首页> 外文期刊>Leonardo Journal of Sciences >Application of PQR Theory for control of a 3-phase 4-wire 4-legs shunt active power filter in the a??-axes using 3D-SVM technique
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Application of PQR Theory for control of a 3-phase 4-wire 4-legs shunt active power filter in the a??-axes using 3D-SVM technique

机译:PQR理论在3D-SVM技术控制a ??-轴中的三相4线4脚并联有源电力滤波器中的应用

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This article discusses and compares two control strategies applied to a 3-phase 4-wire 4-leg shunt active power filter. These two control strategies, including the cross-vector theory called CV theory and the direct method called PQR theory, are based on the instantaneous control of active and reactive power. On one hand, it is shown that, in some cases, cross-vector theory requires elimination of the zero sequence currents in a 3-phase 4-wire 4-leg shunt active power filter, which needs a power storage element, and on the other hand pretreatment system voltage is necessary to obtain compensated sinusoidal current and a degree of freedom. By relying on the cross-vector theory, the PQR theory is used to extract and remove harmonic currents components . In this control technique, there are two internal current control loops and an external voltage control loop, these control loops have been realized by PI controllers when applied 3D-SVM of switching technique. We choose as criteria for comparison the transient and the Total Harmonic Distortion in the line current. A series of simulations in MATLAB/ Simulink environment have been presented and discussed to show the performance of the two control strategies.
机译:本文讨论并比较了应用于三相4线4脚并联有源功率滤波器的两种控制策略。这两种控制策略,包括称为CV理论的交叉矢量理论和称为PQR理论的直接方法,均基于有功和无功功率的瞬时控制。一方面,它表明,在某些情况下,交叉矢量理论要求消除需要电力存储元件的三相4线4脚并联有源功率滤波器中的零序电流,并且其他手部预处理系统的电压对于获得补偿的正弦电流和自由度是必不可少的。依靠交叉矢量理论,PQR理论用于提取和去除谐波电流分量。在这种控制技术中,有两个内部电流控制回路和一个外部电压控制回路,这些控制回路在应用开关技术的3D-SVM时已由PI控制器实现。我们选择线路电流中的瞬态和总谐波失真作为比较的标准。提出并讨论了在MATLAB / Simulink环境中进行的一系列仿真,以显示两种控制策略的性能。

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