锥形数字阵列雷达波束到达方向估计

M. Contu, M. Bucciarelli, P. Lombardo, F. Madia, Rossella Stallone, Marco Massardo
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引用次数: 2

摘要

本文研究了共形锥形数字阵列雷达在系统和处理方面的一些潜在优势,特别是与传统单脉冲角度估计的潜在替代方法有关。首先,如果必须保证360°的覆盖范围,那么当考虑到由四个平面阵列组成的传统系统时,将显示圆锥阵列在减少辐射单元数量方面的潜在好处。其次,考虑到一种创新的数字阵列系统,其中接收的信号在元件级进行模拟到数字转换,相应的数据可能被转移到中央精加工单元,研究了一种用于角度估计的替代方法。本文导出了用光束簇估计仰角的Cramer - Rao下界的理论表达式;我们比较了传统的基于和差波束的角度估计方法和基于适当间隔的拥挤的RX波束簇的角度估计方法的极限性能。这两种方法表现出近似等效的性能,使得第二种方法对于那些已知单脉冲经历性能下降的情况特别有趣,如低仰角估计;在这种特殊情况下,展示了集群设计的一个例子,其中来自低空目标的直接信号必须与反射多径相竞争。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direction of Arrival Estimation Using a Cluster of Beams in a Cone-Shaped Digital Array Radar
In this paper some potential system and processing advantages of conformal cone shaped digital array radar have been investigated, in particular in relation to potential alternative approaches for angle estimation with respect to the traditional monopulse. First of all potential benefit in terms of reduction of the number of radiating elements is shown when a conical array is considered with respect to a traditional system formed by four planar arrays, if a coverage of 360° must be assured. Secondly, having in mind an innovative digital array system where the received signals are analog to digital converted at element level and the corresponding data are possibly transferred to a central elaboration unit, an alternative approach is investigated for angular estimation. In this paper we derive the theoretical expression of the Cramer Rao Lower Bound for elevation angle estimation using a cluster of beams; we compare the limit performance of the traditional approach for angle estimation based on Sum and Difference beams with the approach based on a crowded cluster of RX beams properly spaced. The approaches show approximately equivalent performance, making the second particularly interesting for those situations where monopulse is known to experience performance degradation, as low elevation angle estimation; in this particular case an example of cluster design is shown, where the direct signal from a low altitude target must compete with a specular multipath.
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