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Localization of Electromagnetic Interference Sources Using a Time-Reversal Cavity

机译:使用时间逆腔的电磁干扰源定位

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摘要

In this article, we propose and implement a novel technique to locate electromagnetic interference (EMI) sources using the concept of time-reversal (TR) cavity. We show in an intuitive manner that reflections from the surfaces of a cavity can emulate an infinite number of sensors in the TR method. In order to locate EMI sources, the equipment under test (EUT) is placed in a rectangular metallic cavity, of suitable dimensions according to the considered frequency band and the EUT size, equipped with a simple monopole or dipole antenna. We demonstrate that by using only one sensor, we are able to locate EMI sources by taking advantage of the focusing properties of a TR cavity. The entropy criterion is applied to obtain the focusing time slice in which the maximum electric field determines the location of the EMI source. Both 2- and 3-D numerical simulation schemes are deployed to demonstrate the ability of the proposed technique. The validity of numerical simulations is tested against frequency-domain measurements. Compared with the conventional EMI tests in anechoic chambers and scanning methods, the proposed technique represents a simpler and cost-effective test method requiring only one sensor (a monopole or dipole antenna).
机译:在本文中,我们提出并实施了一种新颖的技术来使用时间逆转(TR)腔的概念来定位电磁干扰(EMI)源。我们以直观的方式显示,从腔的表面的反射可以在TR方法中模拟无限数量的传感器。为了定位EMI源,根据所考虑的频带和EUT尺寸,将被测设备(EUT)放置在矩形金属腔中,其适当的尺寸,并配备有简单的单极或偶极天线。我们证明通过仅使用一个传感器,我们能够利用TR腔的聚焦性能来定位EMI源。熵标准应用于获得聚焦时间片,其中最大电场确定EMI源的位置。部署了2和3-D数值模拟方案,以展示所提出的技术的能力。对数值模拟的有效性是针对频域测量测试的。与扫描腔室中的传统EMI测试和扫描方法相比,所提出的技术代表了一种简单且经济高效的测试方法,需要一个传感器(单极或偶极天线)。

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