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Predictive current control with instantaneous reactive power minimization for a four-leg indirect matrix converter

机译:四桥臂间接矩阵转换器的瞬时无功功率最小化的预测电流控制

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摘要

This paper presents the experimental valida¬tion of a predictive current control strategy with minimiza¬tion of the instantaneous reactive input power for a Four-Leg Indirect Matrix Converter (4Leg-IMC). The topology includes an input matrix converter stage, which provides the dc voltage for a four-leg voltage source converter (VSC) output stage. The VSC’s fourth leg provides a path for the zero sequence load current. The control technique is based on a finite control set model predictive control (FCS-MPC) strategy, whereby the switching states for the input and out¬put converters are selected by evaluating a predictive cost function. This results in a simpler approach than that seen in other well-known modulation methods, such as three-dimensional space vector modulation (3D-SVM). Positive dc voltage, (a requirement for the safe operation of the IMC) and minimization of the instantaneous input reactive power are obtained, while maintaining good tracking of the load reference currents. Furthermore, soft switching is achieved by synchronizing the state changes in the input stage with the application of zero voltage space vectors in the inverter stage. The control strategy is experimentally verified using a laboratory prototype.
机译:本文提出了一种预测电流控制策略的实验验证,该策略具有最小化的四腿间接矩阵转换器(4Leg-IMC)的瞬时无功输入功率。该拓扑包括一个输入矩阵转换器级,该级为四脚电压源转换器(VSC)输出级提供直流电压。 VSC的第四条支路提供了零序负载电流的路径。该控制技术基于有限控制集模型预测控制(FCS-MPC)策略,从而通过评估预测成本函数来选择输入和输出转换器的开关状态。与其他众所周知的调制方法(如三维空间矢量调制(3D-SVM))相比,这种方法更简单。在保持良好跟踪负载基准电流的同时,可获得正直流电压(IMC安全运行的要求)和最小化瞬时输入无功功率。此外,通过使输入级中的状态变化与反相器级中零电压空间矢量的施加同步来实现软切换。使用实验室原型对控制策略进行了实验验证。

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