首页> 外文期刊>IEEE Transactions on Power Electronics >Investigation of Transformer Winding Architectures for High-Voltage (2.5 kV) Capacitor Charging and Discharging Applications
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Investigation of Transformer Winding Architectures for High-Voltage (2.5 kV) Capacitor Charging and Discharging Applications

机译:高压(2.5 kV)电容器充电和放电应用的变压器绕组架构研究

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摘要

Transformer parasitics such as leakage inductance and self-capacitance are rarely calculated in advance during the design phase, because of the complexity and huge analytical error margins caused by practical winding implementation issues. Thus, choosing one transformer architecture over another for a given design is usually based on experience or a trial and error approach. This paper presents analytical expressions for calculating leakage inductance, self-capacitance, and ac resistance in transformer winding architectures (TWAs), ranging from the common noninterleaved primary/secondary winding architecture, to an interleaved, sectionalized, and bank winded architecture. The calculated results are evaluated experimentally, and through finite-element simulations, for an RM8 transformer with a turns ratio of 10. The four TWAs such as, noninterleaved and nonsectioned, noninterleaved and sectioned, interleaved and nonsectioned, and interleaved and sectioned, for an EF25 transformer with a turns ratio of 20, are investigated and practically implemented. The best TWA for an RM8 transformer in a high-voltage bidirectional flyback converter, used to drive an electro active polymer based incremental actuator, is identified based on the losses caused by the transformer parasitics. For an EF25 transformer, the best TWA is chosen according to whether electromagnetic interference due to the transformer interwinding capacitance, is a major problem or not.
机译:由于实际绕组实施问题导致的复杂性和巨大的分析误差容限,因此在设计阶段很少预先计算出诸如寄生电感和自电容之类的变压器寄生效应。因此,为给定设计选择一种变压器架构而不是另一种变压器架构通常是基于经验或反复试验的方法。本文介绍了用于计算变压器绕组架构(TWA)中的漏感,自电容和交流电阻的解析表达式,范围从常见的非交错式初级/次级绕组架构到交错式,分段式和组绕式架构。对于匝数比为10的RM8变压器,通过实验和有限元模拟对计算结果进行了评估。研究并实际实现了匝数比为20的EF25变压器。根据变压器寄生效应引起的损耗,确定了高压双向反激式转换器中RM8变压器的最佳TWA,用于驱动基于电活性聚合物的增量式执行器。对于EF25变压器,根据是否因变压器绕组电容引起的电磁干扰是一个主要问题而选择最佳的TWA。

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