Computationally Effective Wideband Worst Case Model of Electromagnetic Wave Penetration between Compartments inside Enclosure

D. Tsyanenka, Y. Tamashevich, Y. Arlou, E. Sinkevich, V. Mordachev, Xie Ma
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引用次数: 1

Abstract

A wideband worst case model for estimation of electric and magnetic shielding effectiveness of an enclosure (e.g., an aircraft fuselage, ship hull, or vehicle cabin) divided into compartments by partitions is developed. The model makes it possible to estimate the spatial distribution of electric and magnetic fields in the compartments separated from each other by metallic walls with irregularities (apertures, slots, joints, etc.). The model is based on a combination of analytical solutions describing the penetration of radiation through a wall and the distribution of fields inside cavities. The combination is performed in the framework of the perturbation theory and technique of the multilayer structure calculation. The developed model is validated by comparison of results obtained by the model with known experimental results and with results of numerical simulation in the frequency range from 10 MHz to 3 GHz (that corresponds to the range of wavelengths from very large to quite small as compared with dimensions of the compartments used for the validation).
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箱体内隔室间电磁波穿透的有效宽带最坏情况计算模型
建立了一种宽频带最坏情况模型,用于估计被隔层划分的壳体(如飞机机身、船体或车辆舱室)的电磁屏蔽效能。该模型可以估计由不规则金属壁(孔、槽、接缝等)隔开的隔间内电场和磁场的空间分布。该模型是基于描述辐射穿透墙壁和腔内场分布的解析解的组合。在微扰理论和多层结构计算技术的框架下进行组合。通过将模型所得结果与已知实验结果和10 MHz至3 GHz频率范围内的数值模拟结果进行比较,验证了所开发的模型(与用于验证的隔室尺寸相比,该频率范围对应于波长从非常大到相当小的范围)。
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