非均质介质形式的类孤点脉冲信号与电磁屏蔽相互作用的建模

MA Aliseyko, O. Boiprav, N. Grinchik, A. Tarasevich
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摘要

电磁辐射与电磁屏蔽相互作用的建模是电磁屏蔽发展过程中需要解决的一个重要问题。通过解决这个问题,通常可以减少获得电磁屏蔽所需的时间和财务成本,其特征是所需的电磁辐射衰减和反射系数。目前,电磁屏蔽通常以非均质介质的形式发展,这是因为这种屏蔽的电磁辐射反射系数比以连续材料片的形式制成的均质介质的屏蔽要低。本文作者提出了一种以异质介质形式模拟电磁辐射与电磁屏蔽相互作用的新方法。该方法基于使用端到端计数的差分方案,而不明确区分相邻介质之间的界面,满足该边界上全电流和电荷流相等的条件,并且还基于以类孤子信号的形式描述电磁波,其特征是与目前正在建模过程中使用的其他波(矩形波,锯齿波等)相比具有更大的穿透深度。当使用考虑谱线展宽的类孤子信号时,满足第一个初边值问题的匹配条件。现有的求解电动任务的软件包没有考虑匹配条件。在此基础上,利用COMSOL Multiphysics软件包,首先模拟了表面粗糙且粗糙度尺寸明显小于与之相互作用的电磁波长度的银基屏蔽层和表面有槽的铜板屏蔽层的电磁辐射相互作用。它们的直径和深度远小于与它们相互作用的电磁波的长度。选择这些研究对象是由于铜和银在电磁屏蔽制造中的广泛应用,以及屏蔽形成技术的发展前景,该技术在于固体钣金材料表面的非均质化。
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Modeling the Interaction of Solit-Like Pulse Signals with Electromagnetic Shields in the Form of Heterogeneous Media
Modeling of electromagnetic radiation interaction with electromagnetic shields is an important problem that is solved during their development. By solving this problem, as a rule, it is possible to reduce the time and financial costs necessary to obtain electromagnetic shields, characterized by the required electromagnetic radiation attenuation and reflection coefficient. Currently, electromagnetic shields are usually developed in the form of heterogeneous media, which is due to lower the values of electromagnetic radiation reflection coefficient of such shields in comparison with the shields in the form of homogeneous media made in the form of continuous materials sheets. The authors of the article have proposed a new approach to modeling of electromagnetic radiation interaction with electromagnetic shields in the form of heterogeneous media. This approach is based on the use of difference schemes of end-to-end counting without explicitly distinguishing the interface between adjacent media, fulfilling the conditions of equality of full currents and charge flows on this boundary, and also on describing electromagnetic waves in the form of soliton-like signals, characterized by a greater penetration depth compared to other waves used in currently in the process of modeling (rectangular, sawtooth, etc). When using soliton-like signals that take into account broadening of spectral lines, the matching conditions for the first initial-boundary-value problem are satisfied. The existing software packages for electrodynamic tasks solving don’t take into account the matching conditions. On the base of the proposed approach, using the COMSOL Multiphysics software package, the authors first simulated the electromagnetic radiation interaction with a silver-based shield, the surface of which is rough and characterized by roughness sizes significantly smaller than the length of electromagnetic waves interacting with them, and with a shield in the form of a copper plate, the surface of which has slots, diameters and the depth of which is much less than the length of the electromagnetic waves interacting with them. The selection of these objects of study is due to the wide use of copper and silver for the electromagnetic shields manufacture, as well as the prospects for the development of shields formation technology, which consists in the heterogenization of the solid sheet metal materials surface.
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