Simulation Analysis of Electromagnetic Environment Effect and Shielding Effectiveness for VPX Chassis under Plane Wave Radiation

Hongkun Ni, Hong Jiang, Xinbo Li, Qian Jia, Xiaohui Wang
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Abstract

The chassis based on the VPX bus standard structure has been widely applied to the fields of vehicle, missile, radar, etc. In this paper, we analyze the electromagnetic environment effect on VPX chassis via the CST software, and investigate the electromagnetic coupling characteristics of VPX chassis under 20 v/m plane wave radiation according to the RS103 test defined in the MIL-STD-461G standard. By simulation, we analyze the electromagnetic coupling paths of the VPX chassis, find the key positions of the electromagnetic protection such as the air intake, air outlet, trapdoor, and panel gaps, and we propose the electromagnetic protective measures for the weak parts of the VPX chassis. The electromagnetic shielding effectiveness before and after protection design is evaluated. Finally, the simulation results are verified by the experiments. It has guiding significance for the electromagnetic protection design of VPX chassis.
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平面波辐射下 VPX 机箱的电磁环境效应和屏蔽效果仿真分析
基于 VPX 总线标准结构的底盘已广泛应用于车辆、导弹、雷达等领域。本文通过 CST 软件分析了电磁环境对 VPX 底盘的影响,并根据 MIL-STD-461G 标准规定的 RS103 试验,研究了 VPX 底盘在 20 v/m 平面波辐射下的电磁耦合特性。通过仿真分析了 VPX 机箱的电磁耦合路径,找到了进风口、出风口、活门、面板缝隙等电磁防护的关键位置,并针对 VPX 机箱的薄弱部位提出了电磁防护措施。并对防护设计前后的电磁屏蔽效果进行了评估。最后,通过实验验证了仿真结果。对 VPX 机箱的电磁防护设计具有指导意义。
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