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Design and Implementation of a Compact 20-kHz Nanosecond Magnetic Pulse Compression Generator

机译:紧凑型20kHz纳秒电磁脉冲压缩发生器的设计与实现

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A compact magnetic pulse compression (MPC) topology with only two magnetic cores and a continuous repetition rate of 20 kHz is presented. The demand for higher average output powers of pulsed power systems can be achieved by an increase of the pulse rate frequency (PRF). The PRF is often limited by the switching speed or recovery of the main switch and also the complex behavior of the magnetic materials. With the advent of insulated gate bipolar transistors and the nanocrystalline soft magnetic material, PRFs of tens of kilohertz are feasible if a suitable MPC topology is applied. The presented MPC is based on an existing topology that has been significantly improved to enable high-frequency pulse generation. A design method using 3-D magnetostatic and transient magnetic simulations is introduced to enable optimization of the magnetic switching components. A 20 kHz, 60 kV, and 52 ns full width at half maximum (FWHM) MPC generator is designed, built, and tested for a $100~Omega $ load. Simulations suggest that a PRF up to 50 kHz is achievable, but continuous operation will likely be limited by thermal management.
机译:提出了仅具有两个磁芯和20 kHz连续重复率的紧凑型磁脉冲压缩(MPC)拓扑。可以通过增加脉冲频率(PRF)来实现对脉冲电源系统更高平均输出功率的需求。 PRF通常受主开关的切换速度或恢复以及磁性材料的复杂行为所限制。随着绝缘栅双极晶体管和纳米晶体软磁材料的出现,如果应用合适的MPC拓扑结构,几十千赫兹的PRF是可行的。提出的MPC基于现有的拓扑结构,该拓扑结构已进行了显着改进以实现高频脉冲生成。介绍了一种使用3-D静磁和瞬态磁仿真的设计方法,以优化磁开关组件。设计,制造并测试了20kHz,60 kV和52 ns半高全宽(FWHM)MPC发生器,并测试了100〜Omega的负载。仿真表明,可以实现高达50 kHz的PRF,但是连续操作可能会受到热量管理的限制。

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