基于有限元仿真和电磁测量的地下甲烷传感器屏蔽性能分析

F. Ma
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引用次数: 0

摘要

为了消除地下甲烷传感器因电磁干扰而发出的虚警,提出了一种采用仿真和辐射发射测量相结合的方法来完成甲烷传感器屏蔽性能分析的新方法。数据通过R&S频谱分析仪FSP7采集。通过仿真和测量分析了电缆孔径对外壳屏蔽性能的影响,根据辐射干扰特性分布和喇叭形结构屏蔽性能仿真,完成了防爆外壳的优化设计。因此,随着防爆外壳的优化,甲烷传感器的误报率明显降低;然而,当附近的电气设备开关时,偶尔仍会出现误报。为此,在电源端口处设计了复合电磁干扰滤波器,将电磁干扰控制在允许范围内。运行结果表明,系统成功地解决了虚警问题。结果表明,改进屏蔽和滤波对提高甲烷传感器的电磁兼容性有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shielding properties analysis of underground methane sensor based on finite element simulation and electromagnetic measurement
In order to clear up false alarms, issued by underground methane sensors, caused by Electromagnetic Interference (EMI), a novel field way was brought forward in which the simulation and radiated emission measurement were adopted to accomplish the analysis of shielding property about methane sensor. The data was acquired through the R&S spectrum analyzer FSP7. With analyzing the influence of cable aperture on enclosure shielding properties through simulation and measurement, the optimization of explosion-proof enclosure was finished according to the distribution of radiated interference characteristics and simulation of the trumpet structure shield performance. As a result, with the optimization of explosion-proof enclosure, the false alarms of methane sensor significantly reduced; however, there were still occasionally false alarms when nearby electrical equipments were switched on and off. Therefore the complex EMI filter was put forward at power ports and the EMI was controlled within the allowable range. The running results demonstrated that the problem of false alarms had been resolved successfully. It is concluded that the improved shielding and filtering are highly significant in enhancing the Electromagnetic Compatibility (EMC) of the methane sensor.
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