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Design of a bi-directional DC-DC converter for Solid-State Transformer(SST) application by exploiting the shoot through mode

机译:通过利用拍摄模式设计用于固态变压器(SST)应用的双向DC-DC转换器的设计

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摘要

This paper concerns the design of a Solid-State Transformer (SST) based grid integrated battery charger with an isolated bi-directional dc-dc converter to maintain the overall system competitiveness. The proposed full bridge DC-DC converter exploits the shoot through mode in the V2G mode for the boosting purpose, which is the uniqueness of the proposed topology. The inclusion of SST in the design can exhibit substantially compact size and other potential functions such as reactive power flow control, bi-directional power flow etc. The design of the high frequency transformer along with the electrical equivalent circuit obtained from FEA analysis is presented, which is one of the key contributions of this paper. As a proof of concept, simulation results obtained from Matlab-Simulink tools are presented. In summary, design considerations in building the SST based DC-fast charger in a 1-kW power level are presented which can be scaled up to the desired power level according to the requirements.
机译:本文涉及具有隔离的双向DC-DC转换器的固态变压器(SST)网格集成电池充电器,以保持整体系统竞争力。所提出的全桥DC-DC转换器在V2G模式下挖掘拍摄模式,以获得升高目的,这是所提出的拓扑的唯一性。在设计中包含SST可以表现出基本上紧凑的尺寸和其他潜在功能,例如无功功率流量控制,双向功率流等。提出了高频变压器的设计以及从FEA分析获得的电量电路,这是本文的关键贡献之一。作为概念证明,提出了从Matlab-Simulink工具获得的仿真结果。总之,提出了在1 kW功率电平中构建SST基于SST的DC快速充电器的设计考虑,其可以根据要求缩放到所需功率水平。

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