Evaluation of Resonant Tank Topologies for High-Voltage Power Supply in Ion Propulsion Application

Minghai Dong, Hui Li, S. Yin, Zhenni Zeng, Jinshu Lin, X. Liu, Yingzhe Wu
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Abstract

Due to the advantages of high efficiency, low mass, modularization and high power density, the step-up resonant converter is widely adopted in providing kV-level high voltage for the ion propulsion power supply. As a key part of the resonant converter, the resonant tank topology is evaluated in this paper. Based on the characteristics of the high-voltage resonant converter, a selecting criteria for the resonant tank is proposed. Applying the criteria to the 2-element, 3-element, and 4-element resonant tank topologies, the candidate for high-voltage application can be recommended. Then, the selected topologies are compared based on the relationship between voltage gain and frequency. The analytical results show that the gain valley could be more easily founded in the 4-element resonant tank compared with others, thus it is more suitable for the high-voltage application.
离子推进高压电源谐振槽拓扑的评价
升压谐振变换器由于具有高效率、低质量、模块化和高功率密度等优点,被广泛应用于离子推进电源中提供kv级高压。作为谐振变换器的关键部件,本文对谐振槽拓扑结构进行了评估。根据高压谐振变换器的特点,提出了谐振槽的选择准则。将标准应用于2元、3元和4元谐振槽拓扑结构,可以推荐用于高压应用的候选器件。然后,根据电压增益和频率之间的关系对所选拓扑进行比较。分析结果表明,四元谐振槽较其它谐振槽更容易产生增益谷,更适合高压应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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