微纳SAR卫星电池充电器的建模分析与设计

Naiming Chen, Qiang Li, Pengfei Cui, F. Guo, F. Yang, Jun Xu, Hua Yang
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引用次数: 1

摘要

随着现代商用卫星的发展,低成本、轻量化、多功能、高集成度的微纳SAR卫星应运而生。由于SAR负载工作时间短,峰值功率高,必须为SAR负载专门配置一套高压负载电池,以相同的电流提供更大的功率。本文提出了一种具有推挽拓扑的隔离升压变换器,用于锂电池的恒流恒压充电,该充电器变换器采用峰值电流控制方法的双环控制策略来实现恒流恒压充电性能。建立了该变换器的交流小信号等效模型。最后,在充电器样机上进行了实验验证。实验结果验证了分析的正确性和设计的有效性,能够满足SAR负载蓄电池充电的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling analysis and Design of Battery Chargers for Micro-nano SAR Satellites
With the development of modern commercial satellites, the micro-nano SAR satellites with low-cost, light-weight, multi-functional, and highly-integrated features are ushering lately. Due to short working time and high peak power of SAR loads, a set of high-voltage load batteries must be specially configured for SAR loads, supplying larger power with the same current. This paper proposes an isolated boost converter with a push-pull topology for constant current and constant voltage charging of the lithium batteries, and the charger converter uses a dual-loop control strategy of peak current control method to achieve constant current and constant voltage charging performance. The AC small signal equivalent model of the converter is established. Finally, the experimental verification is carried out on the charger prototype. The experimental results verify the correctness of the analysis and the validity of the design, which can meet the requirements of SAR load battery charging.
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