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首页> 外文期刊>IEEE Transactions on Plasma Science >Investigations Into the Design of a Compact Battery-Powered Rep-Rate Capacitor Charger
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Investigations Into the Design of a Compact Battery-Powered Rep-Rate Capacitor Charger

机译:紧凑型电池供电的Rep-Rate电容器充电器的设计研究

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摘要

The U.S. Naval Research Laboratory is developing a battery-powered rep-rate charger for a 60-kJ capacitor bank. The goal is to charge a 4800-$mu{rm F}$ capacitor to 5 kV in ${<}{rm 5}~{rm s}$ for a 50-shot burst at 10 shots/min. A bank of LiFePO4 batteries is used with a full H-bridge converter, a transformer, and a rectifier to transform the 600 V battery voltage to 5-kV secondary voltage. There are two major aspects to the charger design: battery energy store and the dc–dc converter. A stable battery pack requires active cooling, management, and feedback for proper and safe operation. A design study has been performed to identify an appropriate dc–dc converter that can minimize the weight and volume of the system while maintaining high electrical efficiency. An LLC is being evaluated, as it has the possibility of eliminating a discrete inductor using the magnetizing inductance of the transformer in the resonant circuit. Work has also been performed in the design and evaluation of a battery pack, specifically on characterizing the operational parameters of the pack as applied to the desired load. This paper will present simulation data and results from the experiments.
机译:美国海军研究实验室正在为60 kJ电容器组开发一种电池供电的rep-rate充电器。目标是将4800- $ mu {rm F} $ 电容器充电到5 kV的 $ {<} {rm 5}〜{rm s} $ ,以10次/分钟的速度连拍50次。一组LiFePO4电池与一个完整的H桥转换器,一个变压器和一个整流器一起使用,可将600 V电池电压转换为5kV二次电压。充电器设计有两个主要方面:电池能量存储和DC-DC转换器。稳定的电池组需要进行主动冷却,管理和反馈,以确保正确,安全地运行。已经进行了一项设计研究,以确定合适的dc-dc转换器,该转换器可以在保持高电气效率的同时将系统的重量和体积最小化。正在对LLC进行评估,因为它有可能使用谐振电路中变压器的励磁电感来消除分立电感。还已经在电池组的设计和评估中进行了工作,特别是在表征应用于所需负载的电池组的运行参数方面。本文将介绍仿真数据和实验结果。

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