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Simulation and Optimization of the Multi-stage Reconnection Electromagnetic Launch

机译:多级重新连接电磁发射的仿真与优化

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The reconnection electromagnetic launcher utilizes the interaction between the projectile eddy current and the coil magnetic field to accelerate the projectile. A reconnection launch experimental system using the box-shaped helical coils and the flat-plate projectile has been fabricated. Capacitor banks are used as the power supplies. The inductance gradient curve-fitting is performed on the basis of the measured data from the launch apparatus. Based on the circuit equation and the motion equation of the reconnection electromagnetic launch, the numerical simulation model of the projectile motion is established. The simulations show that the launch efficiency decreases when the projectile velocity increases in the multi-stage launch if every stage is kept with the same parameters. To solve the problem, an optimization for the multi-stage launch is presented. The oscillating cycle of the circuit current in each stage is determined according to the projectile velocity, from which the capacitance of the capacitor bank is determined further. Combined with the use of triggered vacuum switches (TVS) as closing switches and owing to the special arc extinguishing performance of the TVS, the projectile velocity can be increased and the launch efficiency can be improved greatly.
机译:重新连接电磁发射器利用射弹涡电流与线圈磁场之间的相互作用,以加速射弹。使用盒形螺旋线圈和平板射弹进行了重新连接的启动实验系统。电容器组用作电源。基于来自发射装置的测量数据执行电感梯度曲线拟合。基于电路方程和重新连接电磁发射的运动方程,建立了射弹运动的数值模拟模型。如果在每个阶段保持相同的参数,则在多级发射中增加,模拟时,发射效率会降低。为解决问题,提出了多级发射的优化。根据射弹速度确定每个级中的电路电流的振荡循环,从该射程速度确定电容器组的电容进一步确定。结合使用触发的真空开关(TVS)作为关闭开关,并且由于电视的特殊电弧灭火性能,可以提高射弹速度,并且可以大大提高发射效率。

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