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Open-Winding Power Conversion Systems Fed by Half-Controlled Converters

机译:由半控转换器供电的开路式功率转换系统

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An open-winding power conversion system with two conventional six-switch voltage-source converters (VSC) affords operation with a lower volt–ampere (VA) rating of each device for a given power rating, as well as a degree of fault tolerance. The disadvantages of such a configuration include a higher total device VA rating and increased conduction loss as compared to a single Y/Δ-connected VSC. In certain ac–dc applications, such as telecommunications, wind, and aerospace generator drives, it is desired to have regulated input currents and output voltage, but regenerative operation is either not required or prohibited. For such applications, an alternative open-winding power converter is proposed in this paper where half-controlled converter (HCC) is employed at each end of an open-winding structure. The resultant total switch count and total VA rating are reduced by half, compared to using full bridges. Besides, the basic advantages of an open-winding configuration, use of HCCs also guarantees immunity to dc-bus shootthrough and simplifies the gate drive circuit. The total VA rating of the proposed topology is found to be 42% less than a six-switch VSC. The operating principle, control method, and analysis with simulation and experimental results of the proposed topology in both a grid-tied rectifier application and a PM generator application are illustrated in this paper.
机译:具有两个传统的六开关电压源转换器(VSC)的开路功率转换系统,在给定的额定功率下,每个设备的额定伏安值(VA)较低,并且具有一定程度的容错能力。与单个Y /Δ连接的VSC相比,这种配置的缺点包括更高的总装置VA额定值和增加的传导损耗。在某些交流-直流应用中,例如电信,风力和航空航天发电机驱动器,希望具有稳定的输入电流和输出电压,但是不需要或禁止进行再生操作。对于此类应用,本文提出了另一种开路功率转换器,其中在开路结构的每一端均采用半控转换器(HCC)。与使用全桥相比,最终的总开关数量和总VA额定值降低了一半。此外,采用开路配置的基本优点是,HCC的使用还保证了对直流总线直通的免疫力,并简化了栅极驱动电路。发现所提出拓扑的总VA额定值比六开关VSC低42%。本文阐述了在并网整流器应用和永磁发电机应用中所提出的拓扑的工作原理,控制方法以及仿真和实验结果的分析。

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