Application of Automobile Antenna Simulation in Experimental Teaching based on CST
DOI:
https://doi.org/10.54691/fhss.v2i12.3258Keywords:
Electromagnetic Compatibility; CST; Vehicle Antenna; Experimental Teaching.Abstract
In this paper, it is proposed to construct electromagnetic compatibility of vehicle antenna in experimental teaching. Three types of vehicle antenna models are adopted, and full-wave electromagnetic simulation software CST is adopted to better show the outstanding significance of electromagnetic simulation software to assist experimental teaching, so as to better understand the application of vehicle antenna simulation in experimental teaching.
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Dudek M, Nasr I , Bozsik G , et al. System Analysis of a Phased-Array Radar Applying Adaptive Beam-Control for Future Automotive Safety Applications[J]. Vehicular Technology, IEEE Transactions on, 2015, 64(1):34-47.
Kim J , Kwon S C , Choi G . Performance of Video Streaming in Infrastructure-to-Vehicle Telematic Platforms With 60-GHz Radiation and IEEE 802.11ad Baseband[J]. IEEE Transactions on Vehicular Technology, 2016:10111-10115.
Tirkas P A, Balanis C A . Finite-difference time-domain method for antenna radiation[J]. IEEE Transactions on Antennas & Propagation, 1992, 40(3): P.334-340.
Luebbers R , Chen L . FDTD calculation of radiation patterns, impedance, and gain for a monopole antenna on a conducting box[J]. IEEE Trans Antennas Propag, 1992, 40(12):1577-1583.
Foreman, T. L . Antenna coupling model for radar electromagnetic compatibility analysis[J]. IEEE Transactions on Electromagnetic Compatibility, 2002, 31(1):85-87.
Rostamzadeh C , Deroy P , Barchanski A , et al. Investigation of electromagnetic field coupling from DC-DC buck converters to automobile AM/FM antennas[C]// IEEE International Symposium on Electromagnetic Compatibility. IEEE, 2016.
Sunmin, Gwon, Hyungu, et al. A Study on Electromagnetic Interference of Electric Vehicles with Variations of Charging Device Inlet Location[J]. Transaction of the Korean Society of Automotive Engineers, 2016, 24(6):694-701.
K, El, Khamlichi, et al. An Efficient Model of the Electromagnetic Field Radiated from Different PLC Configurations[J]. International Journal on Communications Antenna & Propagation Irceap, 2016.
Ott, Henry W. Electromagnetic Compatibility Engineering (Ott/Electromagnetic Compatibility) || Electromagnetic Compatibility[J]. wiley & sons, 2009, 10.1002/9780470508510:1-43.
Yu J H, Ma X L, Zheng Y L. Simulation and Research on Electromagnetic Character and Coupling Degree of Vehicle Antennas[J]. Journal of System Simulation, 2008.
Wu H, Hao Y, Tan X, et al. Simulation and Analysis on Electromagnetic Character and Coupling Degree of Vehicle Antennas[J]. Electronic Test, 2013.
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