Space-time adaptive radar detection of distributed targets

E. Conte, A. De Maio, G. Ricci
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引用次数: 3

Abstract

This paper deals with radar detection of spatially distributed targets embedded in Gaussian noise with unknown covariance matrix. Precisely, noise returns are modeled as Gaussian vectors independent from range gate to range gate; they share the structure of the covariance matrix, but have possibly different power levels. A set of secondary data, free of signal components, is used to estimate the correlation properties of the disturbance. No a priori knowledge about the spatial distribution of the target scatterers is assumed. An adaptive detector is conceived and its performance is evaluated also in comparison with a previously proposed detection structure. Remarkably, the proposed receiver ensures CFAR-ness with respect to either the structure of the covariance matrix and the power backscattered from each cell. A performance assessment confirms its validity to operate in a heterogeneous environment.
分布式目标的空时自适应雷达探测
本文研究了嵌入未知协方差矩阵高斯噪声中的空间分布目标的雷达检测问题。精确地说,噪声返回被建模为独立于距离门到距离门的高斯向量;它们共享协方差矩阵的结构,但可能具有不同的功率水平。一组不含信号分量的二次数据被用来估计扰动的相关特性。没有假设目标散射体空间分布的先验知识。提出了一种自适应检测器,并将其性能与先前提出的检测结构进行了比较。值得注意的是,所提出的接收机保证了相对于协方差矩阵结构和每个单元的功率反向散射的cfar性。性能评估确认其在异构环境中运行的有效性。
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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