基于二维角转向的相控阵铅笔波束雷达单脉冲比测量,提出了一种计算方位角和仰角的有效方法

R.N. Spong
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引用次数: 3

摘要

从具有方位和仰角双方向波束控制的相控阵铅笔波束雷达的方位和仰角单脉冲比测量值出发,需要一种有效的计算方位角和仰角的方法。计算负载要求本来就很高,因为每次扫描通常会有数千个杂波目标报告超过目标检测逻辑的阈值。单脉冲编辑依赖于合并可能的目标报告或丢弃杂波目标与方位角和仰角估计在任何波束宽度之外。本文介绍了一种利用多项式方程最小均方曲线拟合计算角度估计的有效、准确的方法。以100行100列元素天线相控阵雷达为例,给出了角度估计精度的理论图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An efficient method for computing azimuth and elevation angle estimates from monopulse ratio measurements of a phased array pencil beam radar with two-dimensional angle steering
An efficient method is required for computing azimuth and elevation angle estimates from azimuth and elevation monopulse ratio measurements of a phased array pencil beam radar with beam steering in both azimuth and elevation. Computational load requirements are inherently high because typically several thousand clutter target reports per scan survive the thresholds of the target detection logic. Monopulse editing is relied upon to merge likely target reports or discard clutter targets with azimuth and elevation angle estimates outside of either beamwidth. This paper describes an efficient and accurate method for computing angle estimates by means of polynomial equation least mean square curve fitting. Theoretical plots of angle estimation accuracy are presented for a specific example of a phased array radar with 100 rows and 100 columns of elemental antennas.
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