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Modeling of Electromagnetic Rail Launcher System Based on Multifactor Effects

机译:基于多因素效应的电磁轨道发射器系统建模

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摘要

In this paper, circuit simulation was chosen as the main methodology to analyze the characteristics of an electromagnetic (EM) rail launcher (or EM railgun) system, and a complex simulation model was proposed, which was not merely built on the static electrical parameters. Moreover, practical physical processes contributed to the system have also been taken into consideration and expressed as electrical parameters. Thus, the description of a relatively complex system could be realized by a comparatively simple manner, and the simulation result is more accurate and reliable compared with the traditional circuit simulation ones with the static electrical parameters. A circuit simulation model of an EM launch system based on PSpice software was built, in consideration of multifactor effects, such as current skin effect, contact pressure, and contact resistance on the contact surface of the armature and the barrel, velocity skin effect, friction drag, and temperature coefficient of electrical resistivity. Simulations were made based on the proposed model as well as the traditional one. Last but not the least, a comparison between the simulation results and the experimental ones was made to verify the accuracy and effectivity of the improved model.
机译:本文选择电路仿真作为分析电磁轨道发射器(或电磁轨道炮)系统特性的主要方法,并提出了一个复杂的仿真模型,该模型不仅建立在静电参数上。此外,还考虑了对系统有贡献的实际物理过程,并将其表示为电参数。这样,就可以用比较简单的方式来实现对一个相对复杂的系统的描述,与传统的带有静电参数的电路仿真相比,仿真结果更加准确可靠。考虑到当前趋肤效应,接触压力,电枢与发条盒接触面的接触电阻,趋肤效应,摩擦力等多因素影响,建立了基于PSpice软件的电磁发射系统的电路仿真模型。阻力和电阻率温度系数。基于所提出的模型以及传统模型进行了仿真。最后但并非最不重要的一点是,将仿真结果与实验结果进行了比较,以验证改进模型的准确性和有效性。

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