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首页> 外文期刊>IEEE Transactions on Signal Processing >New Saddle-Point Technique for Non-Coherent Radar Detection With Application to Correlated Targets in Uncorrelated Clutter Speckle
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New Saddle-Point Technique for Non-Coherent Radar Detection With Application to Correlated Targets in Uncorrelated Clutter Speckle

机译:非相干雷达检测的新鞍点技术及其在杂波散斑相关目标中的应用

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摘要

This paper presents a novel implementation of the saddle-point technique for calculating the non-coherent detection probability of targets by airborne surveillance radar in the presence of pulse-to-pulse correlation. It is based on the inverse Laplace transform of the moment generating function for the returned power distribution by means of integration along the path of steepest descent. To illustrate the methodology, the problem of non-coherent pulse integration for a target with gamma-fluctuating partially correlated radar cross-section embedded within compound surface clutterwith uncorrelated speckle is revisited. This situation arises for maritime or overland surveillance radar with sufficient frequency agility to fully decorrelate the clutter speckle but not the fluctuations of the target radar cross-section. An exactmethod and a hierarchy of approximations are described, all of which perform well for this problem. Monte Carlo simulation at the quadrature component level is used to verify the results.
机译:本文提出了一种鞍点技术的新实现,该技术可在存在脉冲间相关性的情况下计算机载监视雷达对目标的非相干检测概率。它基于力矩生成函数的拉普拉斯逆变换,通过沿最速下降路径的积分来实现返回功率分布。为了说明该方法,研究了目标的非相干脉冲积分问题,该目标具有嵌入在复合表面杂波中,具有不相关散斑的伽马波动部分相关雷达截面。对于具有足够频率敏捷性的海上或陆上监视雷达,会出现这种情况,以完全解相关杂波斑点,但不会完全消除目标雷达横截面的波动。描述了一个精确的方法和一个近似的层次结构,所有这些方法都很好地解决了这个问题。正交分量级的蒙特卡洛模拟用于验证结果。

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