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首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >Modeling Electromagnetic Field Coupling Through Apertures for Radio-Frequency Interference Applications
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Modeling Electromagnetic Field Coupling Through Apertures for Radio-Frequency Interference Applications

机译:射频干扰应用中通过孔径的电磁场耦合建模

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Electromagnetic field coupling between a digital platform and a radio-frequency antenna through an aperture represents one of the typical coupling paths responsible for radio-frequency interference (RFI) issues in mixed-signal systems. Conventional approaches of modeling radiation through an aperture and evaluating the shielding effectiveness of a metallic enclosure with apertures for classic electromagnetic interference (EMI) applications are not sufficient to handle modern RFI challenges. This paper discusses a segmentation method, together with impedance network representation, employed to divide the enclosure EMI problem into exterior and interior problems. With a port definition based on the vector roof-top basis function, the impedance network for the exterior domain was rigorously formulated using a method of moments solution for mixed potential integral equations. The impedance network for the interior domain was computed using the cavity method based on the analytical formula of 3-D Green's functions in a rectangular cavity. Connecting a pair of impedance networks yielded the overall impedance relationship between the interior port and the exterior port. Ewald's transform was used to accelerate the computation of Green's functions in a cavity with metallic walls, which yielded fast convergence of the series summation in Green's functions. Good agreement with a commercial full-wave tool validated the proposed approach.
机译:数字平台和射频天线之间通过小孔耦合的电磁场代表了混合信号系统中负责射频干扰(RFI)问题的典型耦合路径之一。传统的通过孔模拟辐射并评估具有孔的金属外壳的屏蔽效果的传统方法不足以应对现代RFI挑战。本文讨论了一种分割方法以及阻抗网络表示法,该方法用于将机柜EMI问题分为外部和内部问题。通过基于矢量屋顶基函数的端口定义,使用矩量解方法针对混合电势积分方程严格地建立了外部域的阻抗网络。基于空腔中3-D Green函数的解析公式,使用空腔方法计算出内部域的阻抗网络。连接一对阻抗网络可得出内部端口和外部端口之间的总体阻抗关系。 Ewald变换用于加速具有金属壁的腔体中Green函数的计算,从而使Green函数的级数求和快速收敛。与商用全波工具的良好协议验证了所提出的方法。

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