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Comparing predicted performance of anechoic chambers to free space VSWR measurements

机译:将消声室的预测性能与自由空间VSWR测量进行比较

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Indoor antenna ranges must have the walls, floor and ceiling treated with RF absorber. The normal incidence performance of the absorber is usually provided by the manufacturers of the materials; however, the bi-static or off angle performance must also be known. In reference [1], a polynomial approximation was introduced that gave a prediction of the reflected energy from pyramidal absorber. In this paper, the approximations are used to predict the quiet zone (QZ) performance of several anechoic chambers. These predictions are compared with full wave analysis performed in CST Suite®. A 12 m wide by 22 m long with a height of 12 m chamber was analyzed at 700 MHz. The QZ performance was compared to the polynomial predictions showing a difference of less than 2.2 dB. In addition, comparisons are made with measurements of the QZ performance of anechoic chambers. Measurements performed per the free space VSWR method of three different chambers are compared with the prediction that uses the polynomials presented in [1]. The chambers are: a 18 m long by 11.5 m wide and 11.5 m in height operating from 100M MHz to 12 GHz; a 13.41 m by6.1 m by 6.1 m operating from 800 MHz to 6 GHz; and a 14 m long by 4.12 m by 4.27 m operating in the X band. The results show that the polynomial approximations can be used to give a reasonably accurate and safe prediction of the QZ performance of anechoic chambers.
机译:室内天线范围的墙壁,地板和天花板必须经过RF吸收器处理。吸收体的法向入射性能通常由材料制造商提供;但是,还必须知道双静态或偏角性能。在参考文献[1]中,引入了多项式逼近,可以对金字塔形吸收体的反射能量进行预测。在本文中,近似值用于预测几个消声室的静区(QZ)性能。将这些预测与CSTSuite®中执行的全波分析进行比较。在700 MHz处分析了一个12 m宽x 22 m长,腔室高度为12 m的空间。将QZ性能与多项式预测进行了比较,多项式预测的差异小于2.2 dB。此外,还与消声室QZ性能的测量结果进行了比较。将使用三个不同腔室的自由空间VSWR方法执行的测量结果与使用[1]中给出的多项式的预测进行比较。这些腔室是:18 m长,11.5 m宽,11.5 m高,工作频率为100M MHz至12 GHz;在800 MHz至6 GHz的频率下为13.41 m x 6.1 m x 6.1 m;在X波段工作的长度为14 m x 4.12 m x 4.27 m。结果表明,多项式近似可用于对消声室的QZ性能给出合理准确和安全的预测。

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