两端接地电缆低频磁耦合分析

İlker Yağlıdere
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引用次数: 0

摘要

介绍了几种两端接地的电缆结构的实验和理论考虑。综述了磁耦合与屏蔽理论。在实验中,在4个频率下产生恒定磁场,在每个频率下测试10种不同的电缆配置。给出了40个测量结果,并与文献中的6个测量结果进行了比较。结果表明,由于接地回路的存在,两端接地的电缆对辐射电磁干扰(EMI)的敏感性很高,在这种模式下很难构建良好的电缆结构。所有双接地电缆配置已被发现提供较差的磁场保护性能,在100赫兹和50千赫之间的频率范围。然而,利用由金属金属制成的磁屏蔽的一些配置被发现是有利的。此外,在两端接地的非磁性屏蔽电缆显示出在屏蔽截止频率以上提供一些保护,并讨论了结果。
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Analysis of low-frequency magnetic coupling in cables grounded at both ends
The experiments and theoretical considerations about several cable configurations grounded at both ends are described. The theory of magnetic coupling and shielding is reviewed. In the experiment, a constant magnetic field is generated at 4 frequencies and 10 different cable configurations are tested at each frequency. 40 measurement results are presented and they are compared with 6 measurements in the literature. The results point out that cables grounded at both ends exhibit high susceptibility to radiated electromagnetic interference (EMI) due to the ground loop and it is quite difficult to construct a good cable configuration in this mode. All double-grounded cable configurations have been found to provide poor protection performance against magnetic fields, in the frequency range between 100 Hz and 50 kHz. However, some configurations utilizing magnetic shields made of mumetal are found to be advantageous. Furthermore, cables with a nonmagnetic shield grounded at both ends are shown to provide some protection above the shield cutoff frequency and the results are discussed.
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