Use of the Feature Selective Validation Technique for Correlation of the Measurement and Simulation of Electric Field Radiated by Coaxial Cable from 1 GHz to 2.2 GHz
DOI:
https://doi.org/10.22481/exon.v13i1.20565Keywords:
Coaxial cable, Connectors, Computer Simulation, Shielding Effective ness, Feature Selective Validation TechniqueAbstract
This paper presents a set of measurements and simulations in order to experimentally study the Shielding Effectiveness (SE) of coaxial cables. The results of measurements and simulations are quantified through the Feature Selective Validation technique. The SE is an important parameter on the performance of systems regarding their electromagnetic compatibility. It is of paramount importance the discovery of EMC related failures as soon as possible in order to avoid unexpected costs in later design stages. The simulated computational model considered the resistive load as ideal, but it was still possible to obtain a good correlation in amplitude (ADM) and reasonable in frequency (FDM) and (GDM)
Downloads
References
BHAT, Omkar; BHAT, Sagar; GOKHALE, Pradyumna. Implementation of IoT in smart homes. Int. J. Adv. Res. Comput. Commun. Eng., v. 6, n. 12, p. 149-154, 2017;
Ott, Henry W., Electromagnetic Compatibility Engineering, John Wiley & Sons, 2011. y
Xiao, Pei; Du, Ping-An; Zhang, Bingxue. An Analytical Method for Radiated Electromag netic and Shielding Effectiveness of Braided Coaxial Cable. IEEE Transactions on Electro magnetic Compatibility, VOL.61,n.1, p.121-127, Feb.2019
Kenedy Marconi G. Santos, Marcela Silva Novo, Glauco Fontgalland, Marcelo Bender Pe rotoni, "A simple test for measuring the shielding effectiveness of coaxial cables and con nectors", International Journal of Applied Electromagnetics and Mechanics, p. 1-16,2017.
CISPR 25: Edition 3.0 2008-03: Vehicles, boats and internal combustion engines - Radio Disturbance Characteristics – Limits and methods for the protection on board receiver;
MORA, Nicolas et al. An improved formula for the transfer impedance of two-layer braided cable shields. IEEE Transactions on Electromagnetic Compatibility, v. 57, n. 3, p. 607-610, 2015.
C. Tremola and M. Aurelio Azpurua and E. Javier Paez and G. Moruga, Electromagnetic Compatibility in Latin America - A technological and regulatory perspective, journal IEEE Latin America Transactions, 2013, volume 11, number 6, pages 1307-1317.
B. Demoulin and L. Kon, Shielded Cable Transfer Impedance Measurements, IEEE-EMC Newsletter (Fall 2010), 30–37.
B. Demoulin and L. Kon, Shielded Cable Transfer Impedance Measurements in the Mi crowave Range of 1 GHz to 10 GHz, IEEE-EMC Newsletter (Winter 2011), 52–61.
L. Martens et al., Comparison of test methods for the characterization of shielding of board to-backplane and board to cable connectors, IEEE Transactions on Electromagnetic Com patibility 42(4) (Nov 2000), 427–440.
CST Microwave Studio® - 2019 CST Computer Simulation Technology AG. ”,<https://www.cst.com/Applications/Category/Connectors>,27/04/2019.
Santos, K. M. G. et al. Shielding Effectiveness Measurements of Coaxial Cable and Con nectors Using Compact Open Area Test Site. Journal of Microwaves, Optoelectronics and Electromagnetic Applications, v. 16, n. 4, p. 997-1011, 2017.
Ogundapo, O., Charles Nche, Alistair Duffy, and Gang Zhang. ’Application of the Feature Selective Validation Method and Kolmogorov-Smirnov Test to Evaluate Handling Effects on Crosstalk of Ethernet Cables.’ American Journal of Electrical and Electronic Engineering 6, no. 1 (2018): 32-37.
Ruzek, Vaclav; Drinovsky, Jiri; Cupak, Jan. Feature Selective Validation of Automotive EMC Pre-compliance Tests. Radioengineering, v. 27, n. 1, p. 135, 2018.
IEEE Recommended Practice for Validation of Computational Electromagnetics Computer Modeling and Simulations, IEEE Std 1597.2-2010, pp. 1-124, 2011.
Institute of Electrical and Eletronics Engineers – IEEE, Standard Method for Measuring the Effectiveness of Electromagnetic Shielding Enclosures. IEEE, 2006.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2022 Exatas Online

This work is licensed under a Creative Commons Attribution 4.0 International License.
Você é livre para:
Compartilhar - copia e redistribui o material em qualquer meio ou formato; Adapte - remixe, transforme e construa a partir do material para qualquer propósito, mesmo comercialmente. Esta licença é aceitável para Obras Culturais Livres. O licenciante não pode revogar essas liberdades, desde que você siga os termos da licença.
Sob os seguintes termos:
Atribuição - você deve dar o crédito apropriado, fornecer um link para a licença e indicar se alguma alteração foi feita. Você pode fazer isso de qualquer maneira razoável, mas não de uma forma que sugira que você ou seu uso seja aprovado pelo licenciante.
Não há restrições adicionais - Você não pode aplicar termos legais ou medidas tecnológicas que restrinjam legalmente outros para fazer qualquer uso permitido pela licença.


