快速和慢时间预处理操作对自适应目标检测器的影响

G. M. Güvensen, Ç. Candan
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引用次数: 2

摘要

传统的自适应检测器假设独立且同分布(iid)的次级数据向量不受目标信号的污染。然而,自适应检测器的输入通常是通过在快时间和慢时间维度上对原始数据进行预处理而产生的。本文主要研究快速匹配滤波对自适应目标检测器(Kelly’s检测器、自适应匹配滤波器(AMF)和自适应相干估计器(ACE)的影响。结果表明,在自适应检测之前应用匹配滤波,除非雷达脉冲的距离旁瓣在所有滞后时都为零,否则不符合传统自适应检测器的要求。提出了一种基于酉变换映射的替代预处理方法,并表明该方法完全满足要求。通过数值比较,研究了该方法与传统方法(即快速匹配滤波)的性能增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the impact of fast-time and slow-time preprocessing operations on adaptive target detectors
Conventional adaptive detectors assume independent and identically distributed (iid) secondary data vectors which is not contaminated with the target signal. Yet, the input to the adaptive detectors are produced by preprocessing the raw data in fast-time and slow-time dimensions, in general. This paper mainly aims to study the impact of fast-time matched filtering on the adaptive target detectors, namely Kelly's detector, adaptive matched filter (AMF) and adaptive coherence estimator (ACE). It is shown that the application of matched filtering prior to the adaptive detection violates the requirements of conventional adaptive detectors unless the range side-lobes of the radar pulse is zero at all lags. An alternative preprocessing method, based on an unitary transformation mapping, is suggested and it is shown the alternative approach exactly satisfies the requirements. Numerical comparisons are provided to examine the performance gain of the suggested approach in comparison with the conventional one, i.e. fast-time matched filtering.
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