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Comparison of line and load converter topologies in a bipolar LVDC distribution

机译:双极LVDC分布中线路和负载转换器拓扑的比较

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Low voltage direct current (LVDC) distribution is a new low voltage distribution concept. In this study, potential line and load converter topologies for a bipolar LVDC 1500 V distribution system are compared. It is possible to supply the LVDC network by one or two line converters and the line and load converters can be connected to 750 V DC or 1500 V DC. 12-pulse half-controlled thyristor bridges, two- and three-level PWM converters and Vienna-rectifiers can be used as the line converters and two- and three-level single-phase half and full PWM bridges and three-phase converters can be used as the load converters in the LVDC distribution. The bases for the converter comparison are size of required LCL- and LC-filters, voltage and current stresses of the power semiconductor switches and the capability to operate with bidirectional power flow in the case of line converters. Furthermore, the bases of the load converter comparison are the capability to operate with reduced DC voltage and the capability to feed a half-wave rectifying load. According to the simulation results, the most suitable line converter is the three-level converter if a bidirectional power flow is needed and the Vienna-rectifier if a unidirectional power flow is adequate. The balancing circuit needs to be added to the LVDC network to maintain the voltage balance of the DC capacitors if the LVDC network is supplied by one line converter and the DC link is loaded asymmetrically. According to the simulation results, the most suitable single-phase load converter topologies connected to 750 V DC are the two- and three-level full bridges and the most suitable load converter topologies connected to 1500 V DC are the three-level topologies.
机译:低压直流(LVDC)配电是一种新的低压配电概念。在这项研究中,比较了双极性LVDC 1500 V配电系统的潜在线路和负载转换器拓扑。可以通过一个或两个电源转换器为LVDC网络供电,并且电源转换器和负载转换器可以连接到750 V DC或1500 V DC。可以使用12脉冲半控晶闸管电桥,两级和三级PWM转换器和Vienna整流器作为线路转换器,而两级和三级单相半和全PWM桥以及三相转换器可以用作电源转换器。在LVDC配电中用作负载转换器。进行转换器比较的基础是所需的LCL和LC滤波器的尺寸,功率半导体开关的电压和电流应力以及在使用线路转换器的情况下以双向功率运行的能力。此外,负载转换器比较的基础是在降低的直流电压下工作的能力和馈入半波整流负载的能力。根据仿真结果,如果需要双向功率流,则最合适的线路转换器是三电平转换器,而如果单向功率流足够,则是维也纳整流器。如果LVDC网络由一个线路转换器供电,并且直流母线非对称负载,则需要将平衡电路添加到LVDC网络中,以保持DC电容器的电压平衡。根据仿真结果,最适合连接到750 V DC的单相负载转换器拓扑是两级和三级全桥,最适合连接到1500 V DC的负载转换器拓扑是三级拓扑。

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