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Imposed weighting factor optimization method for torque ripple reduction of IM fed by indirect matrix converter with predictive control algorithm

机译:预测控制算法的间接矩阵变换器馈给IM的IM转矩脉动的强加加权因子优化方法

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摘要

This paper proposes a weighting factor optimization method in predictive control algorithm for torque ripple reduction in an induction motor fed by an indirect matrix converter (IMC). In this paper, the torque ripple behavior is analyzed to validate the proposed weighting factor optimization method in the predictive control platform and shows the effectiveness of the system. Therefore, an optimization method is adopted here to calculate the optimum weighting factor corresponds to minimum torque ripple and is compared with the results of conventional weighting factor based predictive control algorithm. The predictive control algorithm selects the optimum switching state that minimizes a cost function based on optimized weighting factor to actuate the indirect matrix converter. The conventional and introduced weighting factor optimization method in predictive control algorithm are validated through simulations and experimental validation in DS1104 R&D controller platform and show the potential control, tracking of variables with their respective references and consequently reduces the torque ripple.
机译:本文提出了一种预测控制算法中的加权因子优化方法,以减少由间接矩阵变换器(IMC)供电的感应电动机中的转矩脉动。本文分析了转矩脉动行为,以验证在预测控制平台中提出的加权因子优化方法,并证明了该系统的有效性。因此,此处采用一种优化方法来计算与最小转矩脉动相对应的最佳加权因子,并将其与基于传统加权因子的预测控制算法的结果进行比较。预测控制算法基于优化的加权因子选择最小化成本函数的最佳开关状态,以驱动间接矩阵转换器。通过在DS1104 R&D控制器平台上进行的仿真和实验验证,验证了预测控制算法中传统的和引入的加权因子优化方法,并显示了潜在的控制能力,对变量的跟踪以及各自的参考,从而降低了转矩脉动。

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