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Extremely sparse parallel AC-link universal power converters

机译:极为稀疏的并行AC-link通用电源转换器

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Universal power converters are a relatively new class of power converters that can be configured as dc-dc, dc-ac, ac-dc, and ac-ac. These converters that may be classified as parallel and series offer numerous merits over other types of power converters. The parallel ac link universal converter is an extension of a buck-boost converter in which the current of the inductor is alternating, the input and output can have any number of phases and the switches benefit from the soft switching. The main limitation of the parallel ac-link universal power converter is its large number of switches. A three-phase ac-ac configuration requires 12 bidirectional switches that are realized by 24 unidirectional switches. Several modifications, including Sparse and Ultra-Sparse parallel ac-link universal power converters, have been proposed to reduce the number of switches while maintaining the principles of the operation and hence the advantages of this converter. The number of switches in the three-phase ac-ac sparse and ultra-sparse configurations are reduced to 20 and 16, respectively. Another modified configuration, called soft-switched transformerless inverter, was proposed for photovoltaic application. This paper proposes a number of topologies based on the parallel ac-link universal power converters with significantly reduced number of switches. The first category of the proposed topologies, which is an extension of the soft-switched transformerless inverter, reduces the number of switches in a bidirectional three-phase ac-ac configuration to 16. The other topology, which is an extension of the ultra-sparse configuration, reduces the number of switches in the unidirectional ac-ac configuration to 10. This topology can offer galvanic isolation with only a single-phase high frequency transformer. This paper presents the principles of the operation of the proposed topologies and evaluates them through simulation and experiment.
机译:通用电源转换器是一类相对较新的电源转换器,可以配置为dc-dc,dc-ac,ac-dc和ac-ac。与其他类型的电源转换器相比,这些可分为并联和串联的转换器具有许多优点。并行交流链路通用转换器是降压-升压转换器的扩展,其中电感器的电流是交变的,输入和输出可以具有任意数量的相位,并且开关可以从软开关中受益。并行交流链路通用电源转换器的主要限制是开关数量众多。三相ac-ac配置需要由24个单向开关实现的12个双向开关。已经提出了几种修改方案,包括稀疏和超稀疏并行ac-link通用功率转换器,以减少开关的数量,同时又保持其工作原理,并因此保持该转换器的优势。三相ac-ac稀疏和超稀疏配置中的开关数量分别减少到20和16。提出了另一种改进的配置,称为软开关无变压器逆变器,用于光伏应用。本文提出了一种基于并行交流链路通用功率转换器的拓扑,其中开关数量大大减少。拟议拓扑的第一类是软开关无变压器逆变器的扩展,可将双向三相ac-ac配置中的开关数量减少到16。稀疏配置可将单向ac-ac配置中的开关数量减少到10。这种拓扑仅使用单相高频变压器即可提供电流隔离。本文介绍了所提出的拓扑的工作原理,并通过仿真和实验对其进行了评估。

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