A low cost conversion of semi-anechoic chamber to fully-anechoic chamber for RF antenna measurements

C. Kinezos, V. Ungvichian
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引用次数: 6

Abstract

The commonly use of semi-anechoic chambers (SAC) is for electromagnetic interference emission (EMI) measurements. This paper suggests a simple technique to extend the EMI chamber capability to a low-cost fully anechoic chamber (FAC) to characterize the antenna performance. The dimensions of the absorbing cones placed o the reflecting ground surface are based on the Fresnel's zone concept. The receiving antenna operating from 300 MHz to 1 GHz is best located at the corner of the chamber. With the available 2' absorbing cones, the maximum distance between transmitting and receiving antenna of 4.5 meters, and the far-field criteria, the applicable antenna pattern measurement at 300 MHz requires only about 80% of the first Fresnel's zone cone coverage. Within the 0.5/spl times/0.5 m/sup 2/ area, at 60 MHz the worst case field uniformity is about 1.4 dB.
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用于射频天线测量的半消声室到全消声室的低成本转换
半消声室(SAC)通常用于电磁干扰发射(EMI)测量。本文提出了一种简单的技术,将电磁干扰室的能力扩展到低成本的全消声室(FAC),以表征天线的性能。放置在反射地面上的吸收锥的尺寸是基于菲涅耳的区域概念。300mhz ~ 1ghz范围内的接收天线最好位于箱体的角落。利用可用的2'吸收锥,发射和接收天线之间的最大距离为4.5米,以及远场标准,在300 MHz下适用的天线方向图测量只需要大约80%的第一个菲涅耳区锥覆盖。在0.5/spl次/0.5 m/sup 2/区域内,在60 MHz时,最坏情况下的场均匀性约为1.4 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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