Segmental polynomial approximation based phase error correction for precise near field displacement measurements using Six-Port microwave interferometers

Christoph Will, S. Linz, S. Mann, F. Lurz, S. Lindner, R. Weigel, A. Koelpin
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引用次数: 13

Abstract

Six-Port microwave interferometers are a low-cost as well as low-power type of radar sensor with a high phase accuracy, which can be used for precise displacement measurements. Near field effects strongly influence the signal characteristics of a reflection of the electromagnetic wave near the antenna, especially if the target is low reflective. In this paper a calibration procedure based on phase error correction by segmental polynomial approximation is proposed that utilizes these effects. After validating the functionality of the calibration algorithm and its improvement by comparison to a comparable state-of-the-art procedure, two further near field measurements are presented. A cardboard as well as a plastic plate are used as low reflecting targets to show the applicability of the proposed calibration procedure for diverse measurement scenarios.
基于分段多项式近似的六端口微波干涉仪精确近场位移测量相位误差校正
六端口微波干涉仪是一种低成本、低功耗的雷达传感器,具有高相位精度,可用于精确的位移测量。近场效应强烈影响天线附近电磁波反射的信号特性,特别是当目标是低反射时。本文利用这些效应,提出了一种基于分段多项式近似的相位误差校正方法。在验证了校准算法的功能及其改进后,通过比较一个可比较的最先进的程序,提出了两个进一步的近场测量。采用硬纸板及塑胶板作为低反射目标,以显示所建议的校正程序适用于不同的测量情况。
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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