Energy characteristics for nanosecond current interrupter of semiconductor-magnetic pulse generator’s terminal stage

O. Khrysto
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Abstract

Introduction. A semiconductor diode based on reverse current interruption is used to increase a pulse amplitude and peak power delivered on the process load. Usually, a current interrupter is located in the last stage of semiconductor-magnetic pulse generator (SMPG) and is connected in parallel to the load. Problem. Most of publications on this topic mostly concern with analysis of physical processes in the diode structure itself within its oscillating circuit, which is separated from previous SMPG’s pulse compression stages under condition of unidirectional energy transfer from the generator to the load. In this sense, the efficiency of conversion should be determined by the joint of electromagnetic interaction between non-linear compression stages, current interrupter and process load. Goal. Develop a mathematical model of nanosecond current interrupter to determine its electrical and energy characteristics as part of a high-voltage parallel circuit with magnetic pulse compression, depending on the duration and moment of current interruption, the equivalent circuit for load resistance, and to set the most optimal modes of its operation. Methodology. In this work, it is proposed to use a comprehensive approach aimed at the study of electromagnetic processes in the SMPG circuit with a nanosecond current interrupter, which takes into account the topology of circuit, the design parameters of switching reactor, the magnetization curve, the equivalent load resistance, as well as the time parameters of power switches. Results. Analytical expressions describing the electrical and energy characteristics of the interrupter when it operating on the active load are obtained. A numerical simulation of interrupter in the SMPG’s double-loop pumping circuit is carried out, taking into account a nonlinearity of SR’s magnetization curve. Three operation modes of interrupter is described, depending on the initial moment of reverse conduction current interruption. The analysis of interrupter operation on the load with an active-capacitive component is carried out. Practical meaning. The results of the research can be applied in the development of high-voltage SMPG scheme with improved energy-dynamic parameters.
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半导体磁脉冲发生器末级纳秒电流灭流器的能量特性
介绍。基于反向电流中断的半导体二极管用于增加过程负载上传递的脉冲幅度和峰值功率。电流断流器通常位于半导体磁脉冲发生器(SMPG)的末级,与负载并联。问题。关于该主题的大多数出版物主要关注的是在其振荡电路中二极管结构本身的物理过程的分析,该电路与以前的SMPG脉冲压缩阶段在从发生器到负载的单向能量传递条件下分离。从这个意义上说,转换效率应由非线性压缩级、电流中断器和工艺负载之间的电磁相互作用共同决定。的目标。建立纳秒电流断流器的数学模型,根据电流中断的持续时间和时刻、负载电阻的等效电路,确定其作为具有磁脉冲压缩的高压并联电路的一部分的电气和能量特性,并设置其运行的最佳模式。方法。本文提出了一种综合考虑电路拓扑结构、开关电抗器设计参数、磁化曲线、等效负载电阻以及功率开关时间参数的纳秒电流灭弧SMPG电路电磁过程研究方法。结果。得到了断路器在有功负荷上工作时的电能特性的解析表达式。考虑SR磁化曲线的非线性,对SMPG双回路抽运电路中的断流进行了数值模拟。根据反导电流中断的初始时刻,描述了断流器的三种工作模式。分析了带有源容性元件的断流器对负载的影响。现实意义。研究结果可用于改进能量动态参数的高压SMPG方案的开发。
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