Measurement and transformation of continuously modulated fields using a short-time measurement approach

IF 0.6 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
F. Faul, Jana Daubmeier, T. Eibert
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引用次数: 1

Abstract

Abstract. Near-field measurements, which are performed in-situ, may suffer from the fact that the antenna under test (AUT) cannot be accessed to transmit or receive a specifically tailored test signal. In some scenarios, it might also be desired to test the AUT during its real operation state, especially when it comes to the verification of antenna systems. Therefore, the need to handle time- and space-modulated fields in combination with a time-harmonic near-field to far-field transformation (NFFFT) arises. For the case where unmanned aerial vehicles (UAVs) carry the field probe in in-situ measurement scenarios, long observation times, required for the resolution of the frequency spectra of modulated fields, are detrimental due to the UAV movement resulting in blurred measurement positions. The short-time measurement (STM) approach, presented in this article, offers a way to transform the measured field data using a time-harmonic NFFFT with short observation times for the collection of the individual field samples. Measurements are shown which demonstrate the applicability of the STM approach for the measurement and transformation of continuously time-modulated fields in different measurement scenarios.
用短时测量方法测量和变换连续调制场
摘要现场执行的近场测量可能会受到以下事实的影响:无法访问被测天线(AUT)来发送或接收专门定制的测试信号。在某些情况下,可能还需要在AUT的实际操作状态下对其进行测试,尤其是在天线系统验证时。因此,需要结合时间谐波近场到远场变换(NFFFT)来处理时间和空间调制场。对于无人机在现场测量场景中携带场探测器的情况,由于无人机的移动导致测量位置模糊,因此调制场频谱分辨率所需的长观测时间是有害的。本文提出的短时测量(STM)方法提供了一种使用时间谐波NFFFT转换测量场数据的方法,该方法具有短的观测时间,用于收集单个场样本。测量结果表明,STM方法适用于不同测量场景中连续时间调制场的测量和转换。
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来源期刊
Advances in Radio Science
Advances in Radio Science ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
0.90
自引率
0.00%
发文量
3
审稿时长
45 weeks
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