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Journal Article Magnetic field penetration into a slot on conducting plate and rectangular enclosure by long cables carrying currents
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Authors
Jong Hwa Kwon, Hyun Ho Park
Issue Date
2026-02
Citation
AIP Advances, v.16, no.2, pp.1-6
ISSN
2158-3226
Publisher
American Institute of Physics
Language
English
Type
Journal Article
DOI
https://dx.doi.org/10.1063/9.0000961
Abstract
This paper presents an analytical method based on the Fourier transform and mode-matching technique to evaluate electromagnetic field leakage from long power cables. The proposed method models the two-dimensional transverse cross section of high-power cables and accurately predicts the effects of slot size, slot position, enclosure dimensions, and multiple cable configurations on low-frequency magnetic field penetration. The analytical results show excellent agreement with three-dimensional full-wave simulations for long yet finite cable cases, while requiring significantly less computation time. This approach provides clear quantitative insight into the relationship between structural parameters and field penetration, facilitating the efficient design and optimization of low-frequency magnetic shielding structures.
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