Predicting electromagnetic interference to a terminated wire using characteristic mode analysis

被引:0
作者
Hamdalla M.Z.M. [1 ]
Caruso A.N. [2 ]
Hassan A.M. [1 ]
机构
[1] Department of Computer Science and Electrical Engineering, University of Missouri–Kansas City, Kansas City, 64110, MO
[2] Dept. of Physics and Astronomy, University of Missouri–Kansas City, Kansas City, 64110, MO
来源
Applied Computational Electromagnetics Society Journal | 2020年 / 35卷 / 11期
关键词
Characteristic mode analysis; Field-to-wire coupling; Interference;
D O I
10.47037/2020.ACES.J.351128
中图分类号
学科分类号
摘要
Electromagnetic coupling to realistic wire configurations exhibit large variations with respect to the frequency, incident angle, and polarization of the interfering signal. In this work, Characteristic Mode Analysis (CMA) is used to calculate the fundamental modes of a terminated wire above an infinite ground plane. Using the properties of the modes, the coupled currents to the wire’s loads are predicted for different incident excitations. Using this simple but practical wire configuration, we show the versatility of CMA in practical electromagnetic interference and coupling applications. © ACES.
引用
收藏
页码:1318 / 1319
页数:1
相关论文
共 7 条
[1]  
Lu X., Wei G., Pan X., Fan L., Wan H., Dual-port pulsed differential-mode current injection method for high-level electromagnetic pulse radiated susceptibility testing, IET Sci. Meas. Technol, 10, 5, pp. 505-512, (2016)
[2]  
Jia J., Rinas D., Frei S., Prediction of radiated fields from cable bundles based on current distribution measurements, International Symposium on Electromagnetic Compatibility - EMC EUROPE, pp. 1-7, (2012)
[3]  
Harrington R., Mautz J., Theory of characteristic modes for conducting bodies, IEEE Trans. Antennas Propag, 19, 5, pp. 622-628, (1971)
[4]  
Toscani N., Spadacini G., Grassi F., Pignari S. A., Lumped and Distributed-Parameter Circuit Models of the Electromagnetic Clamp, IEEE Trans. Electromagn. Compat, 58, 4, pp. 1007-1015, (2016)
[5]  
Badini L., Spadacini G., Grassi F., Pignari S. A., Pelissou P., A Rationale for Statistical Correlation of Conducted and Radiated Susceptibility Testing in Aerospace EMC, IEEE Trans. Electromagn. Compat, 59, 5, pp. 1576-1585, (2017)
[6]  
Grassi F., Abdollahi H., Spadacini G., Pignari S. A., Pelissou P., Radiated Immunity Test Involving Crosstalk and Enforcing Equivalence with Field-to-Wire Coupling, IEEE Trans. Electromagn. Compat, 58, 1, pp. 66-74, (2016)
[7]  
Hassan A. M., Vargas-Lara F., Douglas J. F., Garboczi E. J., Electromagnetic Resonances of Individual Single-Walled Carbon Nanotubes With Realistic Shapes: A Characteristic Modes Approach, IEEE Trans. Antennas Propag, 64, 7, pp. 2743-2757, (2016)