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全固态高重复频率磁脉冲压缩发生器
引用本文:张东东,周媛,李文峰,许家雨,王珏,邵 涛,赵莹,徐蓉.全固态高重复频率磁脉冲压缩发生器[J].强激光与粒子束,2012,24(4):889-892.
作者姓名:张东东  周媛  李文峰  许家雨  王珏  邵 涛  赵莹  徐蓉
作者单位:1.中国科学院 电工研究所, 北京 1 001 90;
基金项目:国家自然科学基金项目,国家973计划项目
摘    要:设计制作了全固态高重复频率磁脉冲压缩发生器,最高重复频率5 kHz,脉宽70 ns,通过调节初始储能电容上的电压可在500 阻性负载上获得4~40 kV连续可调的输出电压。通过分析简化的磁压缩末级回路,分析了预脉冲产生的过程,得出了预脉冲的电压表达式,选取适当的磁芯相对磁导率,经过求解,得出在磁开关未饱和电感一定时预脉冲随负载阻值变化的曲线簇,从曲线中可以看出:随着负载的阻值的增大,预脉冲的峰值绝对值也增大;在负载恒定的情况下,增大磁开关未饱和电感的大小可以显著地减小负载两端预脉冲的峰值绝对值,这要求磁开关磁芯有更高的相对磁导率。

关 键 词:脉冲功率    磁脉冲压缩    磁开关    可饱和脉冲变压器
收稿时间:2011/10/26

All-solid-state high-repetition-rate magnetic pulse compression generator
Zhang Dongdong , Zhou Yuan , Li Wenfeng , Xu Jiayu , Wang Jue , Shao Tao , Zhao Ying , Xu Rong.All-solid-state high-repetition-rate magnetic pulse compression generator[J].High Power Laser and Particle Beams,2012,24(4):889-892.
Authors:Zhang Dongdong  Zhou Yuan  Li Wenfeng  Xu Jiayu  Wang Jue  Shao Tao  Zhao Ying  Xu Rong
Affiliation:1.Institute of Electrical Engineering,Chinese Academy of Sciences,Beijing 100190,China;2.Key Laboratory of Power Electronics and Electric Drive,Chinese Academy of Sciences,Beijing 100190,China;3.Graduate University of Chinese Academy of Sciences,Beijing 100049,China;4.School of Automation and Electrical Engineering,Tianjin University of Technology and Education,Tianjin 300222,China
Abstract:The paper presents an all-solid-state high-repetition-rate pulse generator with adjustable output amplitude based on magnetic pulse compression (MPC) technique. The pulse compression network makes use of commercially available IGBTs switching a capacitor bank into a metglas transformer together with a voltage doubling circuit. The capacitor bank is charged to 500 V by a resonant LC charger, and also switched by a commercial diode. The output of the pulse generator is controlled by the gate voltage of the IGBTs. Pulses with a width of 70 ns can be generated with repetition rates up to 5 kHz. The amplitude can be controlled from 4 kV to 40 kV into a 500 Ω load. Equivalent circuits for the final operation stage of the compressor accounting for pre-pulse in magnetic switches are presented and analyzed, and the pre-pulse generation process of the MPC system is discussed. Simulation results show that, increasing the unsaturated inductance of the magnetic switch and reducing the load resistance enhance the pre-pulse peak. Thus to diminish the pre-pulse, a better ferrite core with higher permeability should be considered.
Keywords:pulsed power  magnetic pulse compression  magnetic switch  saturable pulse transformer
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