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Optimal simulation techniques for distributed energy store railguns with solid state switches

机译:具有固态开关的分布式储能电磁炮的优化仿真技术

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The objective of this paper is to present an optimal design methodology to determine the best firing strategy, energy store sizing, energy store spacing and maximum system efficiency for a distributed energy store (DES) railgun. System simulations/designs are based on the assumption that switching of the energy storage units is accomplished using solid-state devices. Candidate semiconductor technologies are promising in relation to solving the high energy, low weight requirements of a railgun system and other pulsed power systems requiring high energy, compact switching. A simulation code has been developed and used to produce nondimensional data files that are then scaled to physical railgun values based on input parameters. Capacitive in nature with diodes to prevent negative currents and crowbar diodes to prevent voltage reversal of the capacitors. The main thrust of this simulation effort is to produce a DES design that optimizes the efficiency of the conversion of stored electrical energy to projectile kinetic energy, while also considering the abilities of near term solid-state switching devices.
机译:本文的目的是提出一种最佳设计方法,以确定分布式能量储存(DES)轨道炮的最佳点火策略,能量储存尺寸,能量储存间距和最大系统效率。系统仿真/设计基于以下假设:储能单元的切换是使用固态设备完成的。在解决轨道炮系统和其他需要高能量,紧凑开关的脉冲电源系统的高能量,低重量要求方面,候选半导体技术是有前途的。已经开发了模拟代码,用于生成无量纲数据文件,然后根据输入参数将其缩放为实际的轨道炮值。本质上具有电容性,其中二极管可防止负电流,而撬棒二极管可防止电容器的电压反转。该仿真工作的主要目的是提供一种DES设计,该设计可以优化存储的电能到射弹动能的转换效率,同时还要考虑近期固态开关器件的能力。

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