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Extending the Operating Range of Cascaded H-bridge Based Multilevel Rectifier Under Unbalanced Load Conditions

机译:在不平衡负载条件下扩展了基于级联的H网桥的多级整流器的工作范围

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This paper presents a novel control strategy for cascaded H-bridge based multilevel rectifiers (CHBBR) to operate under unbalanced load and dc-bus voltage conditions. The proposed control strategy exploits the power factor as a degree of freedom to stabilize the rectifier operation. The controller is designed for single-phase seven-level rectifiers and its main feature is that it allows the multilevel rectifier to operate under heavy unbalanced load conditions while absorbing current with low harmonic content. It also eliminates the heavy and bulky line side filter and transformer in addition to extra dc-dc converters needed to obtain different voltage levels. Performance of cascaded H-bridge multilevel rectifier and the corresponding controllers are evaluated based on digital time-domain simulation studies in the PSCAD/EMTDC environment. The studies demonstrate the capability of the proposed control strategy to maintain the stability of the rectifier under unbalanced load conditions.
机译:本文提出了一种新的控制策略,用于基于级联的H网桥的多级整流器(CHBBR),在不平衡负载和直流电压条件下运行。所提出的控制策略利用功率因数作为稳定整流器操作的自由度。控制器专为单阶段七级整流器设计,其主要特征是它允许多级整流器在重均衡的负载条件下运行,同时吸收具有低谐波含量的电流。除了额外的DC-DC转换器需要获得不同的电压电平之外,它还消除了重型和庞大的线路侧滤波器和变压器。基于PSCAD / EMTDC环境中的数字时域仿真研究,评估级联H桥多级整流器的性能和相应的控制器。研究证明了所提出的控制策略在不平衡负荷条件下保持整流器的稳定性的能力。

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