一种提高雷达累积探测概率的两步序贯方法

L. Brennan, F. Hill
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引用次数: 20

摘要

相控阵雷达可以使用顺序探测程序,与均匀扫描相比,可以显著提高搜索能力。本文讨论了累积检测概率(逼近目标在到达给定距离之前被检测到的概率)的改进,累积检测概率可以通过Finn[6]首先描述的两步顺序测试获得。在该测试中,在每个波束位置发射第一脉冲。如果在任何距离单元中观察到阈值交叉,则传输具有较高能量的第二脉冲,并且返回与较高阈值比较。当且仅当在同一距离单元的两个脉冲上观察到阈值交叉时,宣布目标存在。给出了非波动目标和Swerling所考虑的两种目标波动模型的累计检测概率与距离的曲线[7]。给出了三种距离分辨率值的计算结果,并列出了每种情况下优化性能的雷达参数。在距离分辨率为距离的1%到10%的实际情况下,与均匀扫描相比,这里考虑的顺序测试可节省3到4 dB的能量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Two-Step Sequential Procedure for Improving the Cumulative Probability of Detection in Radars
Sequential detection procedures, which may be used with phased-array radars, can provide a significant improvement in search capability as compared to uniform scanning. This paper discusses the improvement in cumulative detection probability (the probability that an approaching target is detected before it reaches a given range) which can be obtained with the two-step sequential test, first described by Finn [6]. In this test, a first pulse is transmitted in each beam position. If a threshold crossing is observed in any range cell, a second pulse of higher energy is transmitted and the returns compared with a higher threshold. A target is declared present if and only if threshold crossings are observed on both pulses in the same range cell. Curves of cumnulative detection probability vs. range are given for a nonfluctuating target and for two of the target fluctuation models considered by Swerling [7]. Results are given for three values of range resolution, and the radar parameters that optimize performance are tabulated in each case. In practical cases where the range resolution is from one to ten percent of the range, the sequential test considered here yields an energy saving of 3 to 4 dB as compared with uniform scanning.
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