基于固态变压器(SST)的电动汽车充电站变压器设计

Eslam Abdelhamid Younis, Omar Zayed, Ahmed Elezab, M. Ibrahim, M. Narimani
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引用次数: 0

摘要

在电动汽车充电站等各种应用中,固态变压器(SSTs)被广泛研究以取代线频变压器(LFT)。SST技术为系统提供了更多的可控性,具有功率因数校正的能力,并且由于使用了中频变压器(MFT)而不是LFT,因此大大减小了整个系统的尺寸和重量。本文开发了一种优化设计工具,用于设计用于基于sst的电动汽车充电站的100kw, 20khz变压器。该工具将系统规格作为用户的输入,然后选择最佳的芯、匝数和Litz线,以加速设计过程。实施了两个按比例缩小的5 kW mft。第一种是采用文献中常用的设计方法,保证堆芯不发生饱和,并将堆芯损耗限制在一定范围内。然后,将基于开发的工具设计的变压器与常规设计的变压器在体积和效率方面进行了比较。并对该变压器进行了测试,将漏感值与解析值和模拟值进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transformer Design for Solid-State Transformer (SST)-Based EV Charging Station Applications
Solid-state transformers (SSTs) are extensively studied nowadays to replace the line-frequency transformers (LFT) in various applications such as EV charging stations. The SST technology provides more controllability over the system, has the ability of power factor correction, and drastically reduces the size and weight of the whole system thanks to the medium-frequency transformer (MFT) used instead of LFT. In this paper, an optimized design tool is developed to design a 100 kW, 20 kHz transformer to be used in an SST-based EV charging station. The tool takes the system specifications as an input from the user then chooses the optimal core, number of turns, and Litz wire, to accelerate the design process. Two scaled-down 5 kW MFTs are implemented. The first was designed using the commonly used method in literature which ensures no saturation occurs in the core and limits the core losses to a certain value. Then, the transformer designed based on the developed tool is compared with the conventional design in terms of volume and efficiency. The transformer is also implemented and tested to compare the leakage inductance with the analytical and simulated values.
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