TR电源组件的高效率优化综述OA
Review of High-efficiency Optimization Based on TR Power Supplies
TR电源系统设计是一个充满挑战的工程,其对整机效率、输入电压范围、功率密度要求较高.本文在阐述TR电源系统架构的基础上,从TR电源的拓扑选型、控制算法等方面,对比了不同选型方案的优缺点,详细论述了基于TR电源的DC/DC拓扑优化方法.综述了针对多模块并联、多管并联的均流技术,并结合其后级脉冲负载特性总结了外接电容阵的特性和状态监测技术,梳理了当前TR电源研究热点和未来研究方向,包括宽禁带半导体及模块封装应用、智能热控与热-电耦合建模、软启动动态响应技术和数字电源控制技术,为新一代TR电源的研制提供参考.
The design of transmit-receive(TR)power supply system is a challenging engineering task,with high requirements for the overall machine efficiency,input voltage range,and power density.Based on the description of the TR power supply system architecture,this paper compares the advantages and disadvantages of different selection schemes from the aspects of topology selection and control algorithm for TR power supplies,and elaborates the DC/DC topology optimization method based on TR power supplies in detail.Then,a review is made on the current sharing technologies for multi-module parallel connection and multi-tube parallel connection.The characteristic studies and state monitoring technologies for external capacitor arrays are summarized,along with the characteristics of the subsequent pulse load.Subsequently,the current research hotspots and prospects of the TR power supply are reviewed,including the applications of wide bandgap semiconductors and module packaging,intelligent thermal control and thermal-electrical coupling modeling,soft-start dynamic response technologies,and digital power supply control technologies.In summary,this article sorts out the future research directions and key technologies for TR power supplies,providing a reference for the development of new TR power supplies.
孙伟翔;王新征;李硕;陈大川;石磊磊;徐浩;刘世超
上海空间电源研究所,上海 200245上海空间电源研究所,上海 200245上海空间电源研究所,上海 200245上海空间电源研究所,上海 200245上海空间电源研究所,上海 200245上海空间电源研究所,上海 200245上海空间电源研究所,上海 200245
信息技术与安全科学
TR电源脉冲负载宽输入范围效率优化DC/DC
transmit-receive(TR)powerimpulsive loadwide input rangeefficiency optimizationDC/DC
《上海航天(中英文)》 2026 (4)
61-73,13
国家自然科学基金资助项目(U2241284)
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