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Application of the translated-SWE algorithm for the characterization of antennas installed on cars using a minimum number of samples

机译:翻译SWE算法在使用最小样本上安装在汽车上安装天线的算法

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Automotive antenna measurements are increasingly demanding. Modern cars are equipped with a large number of integrated antennas, spanning a wide frequency range for a large number of applications. Integrated antennas are strongly coupled with the structure, final testing are thus performed on the vehicle to accurately determine the performance. The physical and electrical size of typical cars, impose different measurement challenges while performing radiated testing in automotive Spherical Near Field (SNF) ranges. At higher frequencies, the coupling between antenna and vehicle is often limited to the near vicinity of the antenna. It is therefore customary to position the vehicle in the range such that the measurement coordinate system is centered on the antenna. The sampling requirement, to represent the antenna and nearby environment, can be reduced while maintaining acceptable accuracy. In many cases, such desirable arrangement becomes impractical, either due to a high number of antennas to be tested in different positions or due to size of the range. The Translated Spherical Wave Expansion (Translated-SWE) has recently been introduced as an advanced post-processing tool to place the local coordinate system in any position within the measurement range [1-2]. This eliminate the necessity to move the vehicle during testing. In this paper, the Translated-SWE is applied to typical automotive measurements scenarios of antennas in displaced positions on vehicles. Sampling guidelines for full vehicle testing using this method are presented for the first time. Measurement accuracy is investigated experimentally on a 1:12 scaled vehicle with integrated antenna in a standard multi-probe system.
机译:汽车天线测量越来越苛刻。现代汽车配备大量集成天线,跨越大量应用的宽频范围。集成天线强烈地与该结构耦合,因此在车辆上执行最终测试以精确地确定性能。典型汽车的物理和电容,在在近场(SNF)范围内的汽车球形中执行辐射测试时,对不同的测量挑战施加不同的测量挑战。在较高频率下,天线和车辆之间的耦合通常限于天线附近。因此,常规地将车辆定位在范围内,使得测量坐标系以天线为中心。可以减少采样要求,以表示天线和附近的环境,同时保持可接受的准确性。在许多情况下,这种理想的布置变得不切实际,因为由于在不同位置或由于范围的尺寸上测试了大量的天线。最近被引入了翻译的球面波扩展(翻译SWE)作为先进的后处理工具,将局部坐标系放置在测量范围内的任何位置[1-2]。这消除了在测试期间移动车辆的必要性。在本文中,翻译的SWE应用于车辆上位移位置中的天线的典型汽车测量方案。使用该方法的全车辆测试采样指南首次介绍。在标准多探针系统中使用集成天线实验研究测量精度,在标准的多探针系统中使用集成天线。

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