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Modeling and Control of Circulating Currents for Parallel Three-Phase Boost Rectifiers With Different Load Sharing

机译:具有不同负载分配的并联三相升压整流器的环流建模和控制

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摘要

In this paper, a general definition of circulating currents for each phase of each paralleled converter with different load sharing is first proposed. Then, based on this definition, the corresponding circulating current index $gamma_{kj}$ and unbalance rate $beta_{j}$ for paralleled converter $j$ are proposed to provide one with a quantitative measure about the serious status of power quality. Third, the corresponding general model of circulating currents is also derived for understanding the governing dynamic behavior of circulating currents. Fourth, based on the derived model, the proposed coordinate control strategy is then proposed for different load sharing controls, as well as elimination of circulating currents. Furthermore, a prototype system is also constructed, and the proposed coordinate control is implemented using TMS320F2812 digital signal processor. Both simulation and experimental results indeed show the effectiveness of the proposed coordinate control.
机译:在本文中,首先提出了具有不同负载分配的每个并联转换器的每个相的循环电流的一般定义。然后,基于此定义,提出了并联转换器$ j $的相应循环电流指标$ gamma_ {kj} $和不平衡率$ beta_ {j} $,以提供有关电能质量严重状况的定量度量。第三,为了理解循环电流的控制动态行为,还推导了相应的循环电流通用模型。第四,基于导出的模型,然后针对不同的负载共享控制以及消除循环电流,提出了所提出的坐标控制策略。此外,还构建了原型系统,并使用TMS320F2812数字信号处理器实现了所提出的坐标控制。仿真和实验结果的确表明了所提出的坐标控制的有效性。

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