On the Minimum Range Length for Performing Accurate Direct Far-Field Over-the-Air Measurements

B. Derat, Gerhard F. Hamberger, Fabian Michaelsen
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引用次数: 5

Abstract

Over-the-air (OTA) performance evaluation requires large investments in anechoic environments. The question of minimizing the test distance is hence critical, and even more in this time where millimeter-wave technologies are about to be largely deployed in 5G devices. A recent publication has identified that direct far-field measurements can be accurately carried out at a much shorter range length than the well-known Fraunhofer distance. This paper introduces a further validation of this reduced distance, by employing an innovative method to simulate spherical measurements with arbitrary DUT, test probes and range lengths. The studies carried out confirm the relevance of this shorter distance, not only for the evaluation of the peak equivalent istropic radiated power (EIRP) or sensitivity (EIS), but also for the total radiated power (TRP) or sensitivity (TIS). In addition, it is demonstrated that the usual assumption that the TRP or TIS measurement is almost independent from the range length is flawed. Two main reasons relating to the test antenna are established which create this dependence: (i) OTA test probes have a finite resolution, and (ii) the probe and instrumentation typically captures the magnitude of two components of the E-field, which are not straightforwardly related to the power density in the near-field.
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关于执行精确的直接远场空中测量的最小范围长度
无线(OTA)性能评估需要在消声环境中进行大量投资。因此,最小化测试距离的问题至关重要,尤其是在毫米波技术即将大规模部署在5G设备上的这个时候。最近发表的一篇论文指出,直接远场测量可以在比著名的弗劳恩霍夫距离短得多的范围内精确地进行。本文通过采用一种创新的方法来模拟任意DUT,测试探头和范围长度的球形测量,进一步验证了这种缩短的距离。所进行的研究证实了这一较短距离的相关性,不仅与峰值等效全向辐射功率(EIRP)或灵敏度(EIS)的评估有关,而且与总辐射功率(TRP)或灵敏度(TIS)的评估有关。此外,还证明了通常认为TRP或TIS测量几乎与距离长度无关的假设是有缺陷的。与测试天线有关的两个主要原因导致了这种依赖性:(i) OTA测试探头具有有限的分辨率,(ii)探头和仪器通常捕获e场的两个分量的大小,这与近场的功率密度没有直接关系。
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