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Fault tolerant cell design for MMC-based multiport power converters

机译:基于MMC的多端口电源转换器的容错单元设计

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The Modular Multilevel Converter (MMC) is a promising technology for medium-high voltage DC/AC converters, being adequate for HVDC transmission systems. Among the appealing characteristics of the MMC are their modularity, and consequently their scalability, as well as the fact that there is no bulk storage element. One key aspect for the operation of the MMC is the response in the event of a short circuit in the DC link. Conventional MMC cells consist of a half-bridge and a capacitor, and have no capability to block the short circuit in the DC side, meaning that expensive and bulky circuit breakers might be needed in this case. Several fault tolerant cell designs have been proposed. However, these desings always bring an increase in the number of power devices and losses. Conventional MMC design can be enhanced to provide added functionalities, e.g. multiport power converters and solid state transformers (SST). A mean to achieve this is by providing the cells the capability to transfer power. This enhancements will imply an increase in the number of power devices and passives, as well as further complexity of the control. However, the resulting cells structures can offer new opportunities regarding fault tolerance. This paper revises the fault tolerance capability of MMCs, and analyzes the behavior of MMC-based multiport power converters in the event of faults. A new cell structure will be proposed capable of blocking the DC short circuit current, therefore protecting the power converter with reduced extra elements.1
机译:模块化多电平转换器(MMC)是一种用于中高压DC / AC转换器的有前途的技术,适用于HVDC传输系统。 MMC的吸引人的特征是它们的模块化,因此具有可伸缩性,以及不存在大容量存储元件的事实。 MMC操作的一个关键方面是DC链路发生短路时的响应。常规的MMC电池由一个半桥和一个电容器组成,并且没有能力阻止DC侧的短路,这意味着在这种情况下可能需要昂贵而笨重的断路器。已经提出了几种容错单元设计。然而,这些设计总是带来功率器件的数量和损耗的增加。常规的MMC设计可以被增强以提供附加的功能,例如。多端口电源转换器和固态变压器(SST)。实现此目的的手段是通过为电池提供传递功率的能力。这种增强将意味着功率器件和无源器件数量的增加,以及控制的进一步复杂性。但是,所得的单元结构可以提供有关容错的新机会。本文修改了MMC的容错能力,并分析了基于MMC的多端口电源转换器在出现故障时的行为。将提出一种新的电池结构,该结构能够阻止直流短路电流,从而通过减少额外的元件来保护功率转换器。1

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