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Simulation research on the return conductor configuration for lightning indirect effect test of metal cylinder

机译:金属缸雷电间接效应试验蒸馏导体配置仿真研究

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In this paper, a method for constructing the experimental device for lightning indirect effect of the metal cylinder flying object is studied, and a cage-like frame similar to coaxial line is designed as the coupling device. Through the electromagnetic simulation software CST, the influence of the different load impedance and the different return conductor structures on the simulation results is obtained. The current resonance of system is analyzed by observing the current waveform of load which has different values. By calculating the surface current of metal cylinder, the impact of return conductor arrangement on the metal cylinder surface current distribution uniformity is analyzed. Finally, it is concluded that the system does not produce resonance in the case of different load impedances. When the system length is small, the size of the load impedance can be selected flexibly according to the actual experiment needs. The larger the number of return conductors and the smaller the distance between the conductor and the metal cylinder are, the more uniform the current distribution is. The simulation results provide foundation for the actual experiment.
机译:在本文中,研究了用于构建用于构建用于金属缸飞行物体的闪电间接效应的实验装置的方法,以及类似于同轴线的笼状框架被设计为联接装置。通过电磁仿真软件CST,获得了不同负载阻抗的影响和不同返回导体结构对模拟结果。通过观察具有不同值的负载的电流波形来分析系统的当前共振。通过计算金属缸的表面电流,分析了返回导体布置对金属缸表面电流分布均匀性的影响。最后,得出结论,该系统在不同负载阻抗的情况下不会产生共振。当系统长度小时,可以根据实际实验需要灵活地选择负载阻抗的尺寸。返回导体的数量越大,导体和金属筒之间的距离越小,电流分布的均匀越均匀。仿真结果为实际实验提供了基础。

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