Design of an optimized linear sparse antenna array for a 24 GHz radar tachymeter

T. Pavlenko, Christoph Reustle, K. Thurn, D. Shmakov, R. Ebelt, M. Vossiek
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引用次数: 5

Abstract

This paper presents the design of a linear antenna array for use in a 24 GHz radar tachymeter. The task of the proposed radar tachymeter is the precise measurement of the distance and angle to a cooperative transponder. To obtain the desired high accuracy, we designed an optimized sparse antenna array. The antenna pattern was selected using a brute-force optimization method. A fixed number of array elements was placed on a limited number of allowed grid positions and the array pattern with the best figure of merit for the given radar tachymeter application was selected. This approach can be successfully employed for sparse antenna array designs where multiple constraints such as aperture size limitations or number and spacing of antenna array elements are given. Distance and angle measurements taken with the implemented optimized array show excellent results. The standard deviations in range and azimuth were 8.6 mm and 0.1°, respectively for a range of several hundred meters.
24ghz雷达测速仪的优化线性稀疏天线阵列设计
本文介绍了一种用于24 GHz雷达测速仪的线性天线阵列的设计。所提出的雷达测速仪的任务是精确测量到合作应答器的距离和角度。为了获得期望的高精度,我们设计了一种优化的稀疏天线阵列。采用暴力优化方法选择天线方向图。将固定数量的阵列元素放置在有限数量的允许网格位置上,并选择具有给定雷达测速仪应用的最佳优值的阵列图。该方法可以成功地应用于具有孔径大小限制或天线阵单元数目和间距等多重约束条件的稀疏天线阵设计。用优化后的阵列进行的距离和角度测量取得了良好的效果。在几百米范围内,距离和方位角的标准差分别为8.6 mm和0.1°。
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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