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Power Supply Design for High Voltage Capacitor Discharge Railgun Supply using Thyristors

机译:使用晶闸管的高压电容放电轨道电源设计

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The detailed design and analysis of a thyristor [1] based capacitor discharge power supply is important in the development of pulsed power technology to accurately predict the voltage and current stress of each component. Simulation of the switching predicts how the voltage is shared by series thyristors and helps size the thyristor snubber circuits. The peak current in the thyristor is predicted. When parallel capacitor discharge supplies are used to drive a railgun the simulation predicts the shape of the current depending on the initial capacitor voltages, delay time between discharge pulses and circuit parameters. A simplified model of the electromechanical behavior of a railgun is developed in order to predict the electrical stress on a solid state switching power supply. A capacitor discharge power supply design is then presented and the behavior is simulated.
机译:基于晶闸管的详细设计和分析基于电容器放电电源在脉冲功率技术的开发中是重要的,以准确地预测每个部件的电压和电流应力。切换的仿真预测电压如何由串列晶闸管共享,并有助于晶闸管缓冲电路的尺寸。预测晶闸管中的峰值电流。当并行电容放电供应用于驱动RailGUN时,模拟根据初始电容电压,放电脉冲和电路参数之间的延迟时间预测电流的形状。开发了一种轨道轨道的机电行为的简化模型,以预测固态开关电源上的电力应力。然后呈现电容器放电电源设计,并模拟行为。

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