固态变压器用低压igbt隔离型双向DC/DC变换器

Xiaodong Zhao, Binbin Li, Q. Fu, Yuejie Zhang, Shaukai Mao, Dianguo Xu
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引用次数: 1

摘要

为了减少占地面积和提高效率,固态变压器(SST)是牵引和智能电网应用的一项有吸引力的技术。传统的隔离型双向DC/DC变换器(IBDC)作为SST的关键器件,由于半导体器件的开关特性和中频变压器(MFT)的高绝缘要求的限制,很难同时保证高效率和高功率密度。本文提出了一种新的IBDC拓扑结构,其特点是利用具有优异开关特性的低压igbt来构建高压结构。这有助于减少mft的数量。同时,可以保证所有igbt的零电流开关(ZCS)条件。这大大降低了开关损耗。分析了所提出的IBDC的工作原理,并通过仿真结果验证了其可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Isolated Bidirectional DC/DC Converter with Low-Voltage IGBTs for Solid-State Transformers
In order to reduce footprint and improve efficiency, solid-state transformer (SST) is an attractive technology for traction and smart grid applications. As the key components of SST, the conventional isolated bidirectional DC/DC converter (IBDC) is hard to guarantee high efficiency and high power density at the same time, due to the limitations of switching characteristics of semiconductor devices and high insulation requirements of medium frequency transformer (MFT). In this paper, a new IBDC topology is proposed, which is characterized by utilizing low-voltage IGBTs with excellent switching characteristics to build high voltage configuration. This helps to reduce the number of the MFTs. Meanwhile, the zero-current switching (ZCS) conditions for all the IGBTs can be guaranteed. This significantly reduce switching losses. The operation principles of the proposed IBDC are analyzed, and the feasibility is verified by simulation results.
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