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A Dual-Capacitors Type Energy Recovery Power System for Repetitive Pulsed High Magnetic Fields

机译:用于重复脉冲强磁场的双电容器型能量回收电源系统

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摘要

As a flexible and convenient tool, a repetitive pulsed high magnetic field (RPHMF) would be employed for scientific research and industrial applications. A novel RPHMF system design adopting a dual-capacitors type energy recovery power system is introduced in this paper. The energy stored in the magnet can be fed back to the capacitor by a choke coil and a resonant capacitor while the energy dissipated in the discharge will be replenished to the capacitor through a high frequency resonant capacitor charging power system (CCPS). The main advantages of the design are as followed: first, the energy feedback make the system more efficient; second, during the whole process there is no reverse voltage on the metalized film capacitors, improving the energy storage capacitors' service lifetime and reliability remarkably; finally, convenience can be brought to the high frequency CCPS's application. In this paper, theoretic analysis of RPHMF system is described and an experimental device with a bitter magnet as the load is built to test the design for its verification. A 1.2 Hz, 8 T repetitive pulsed high magnetic field is generated. Experimental results show that there is no reverse voltage on the energy storage capacitors in the whole process. The factors influencing the efficiency and frequency of the system are analyzed in detail.
机译:作为一种灵活方便的工具,重复脉冲高磁场(RPHMF)将用于科学研究和工业应用。介绍了一种采用双电容式能量回收电源系统的新型RPHMF系统设计。磁体中存储的能量可以通过扼流圈和谐振电容器反馈到电容器,而放电中耗散的能量将通过高频谐振电容器充电电源系统(CCPS)补充到电容器中。该设计的主要优点如下:首先,能量反馈使系统效率更高;其次,在整个过程中,金属化薄膜电容器上没有反向电压,显着提高了储能电容器的使用寿命和可靠性。最后,可以为高频CCPS的应用带来便利。本文对RPHMF系统进行了理论分析,并建立了带有苦磁铁作为负载的实验装置,以验证其设计。产生1.2 Hz,8 T的重复脉冲强磁场。实验结果表明,储能电容器在整个过程中没有反向电压。详细分析了影响系统效率和频率的因素。

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