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Stochastic analysis of random frequency modulated waveforms for noise radar systems

机译:噪声雷达系统随机调频波形的随机分析

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摘要

Noise radars are electromagnetic systems that use random signals for detecting and locating reflecting objects. Besides high performance against external interferences (intentional or not), the stochastic nature of the transmitted waveforms may lead to the suppression of range ambiguity in the detection of targets and low range sidelobes, if systems parameters are properly chosen. This paper addresses a probabilistic analysis to derive mathematical expressions for the signal-to-noise ratios, the peak-to-sidelobe ratios and the signal-to-interference ratios (due to ambiguous targets) throughout a typical receiver processing chain of a pulsed FM noise radar. A receiver that employs matched filtering and pulse integration prior to detection was considered. Pulse compression and integration gains (in signal-to-noise and signal-to-interference, due to ambiguous targets, ratios) are also derived. The analysis provides closed-form expressions relating the precise dependence of sidelobe levels as well as interference levels due to ambiguous targets to the integration time, the transmit signal bandwidth, and the number of integrated pulses.
机译:噪声雷达是电磁系统,使用随机信号来检测和定位反射物体。如果适当选择系统参数,则除了对外界干扰(有意或无意)的高性能外,所发射波形的随机性还可能抑制目标和低旁瓣检测中的范围模糊性。本文讨论了概率分析,以得出整个典型的脉冲FM接收器处理链中信噪比,峰旁瓣比和信号干扰比(由于目标不明确)的数学表达式噪音雷达。考虑了在检测之前采用匹配滤波和脉冲积分的接收器。还得出了脉冲压缩和积分增益(由于目标不明确,比率导致信噪比和信号干扰)。该分析提供了封闭形式的表达式,将旁瓣电平的精确依赖性以及由于模棱两可的目标引起的干扰电平与积分时间,发射信号带宽和积分脉冲数相关联。

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