Mitigation of range and velocity walk in airborne passive radar with long integration time

M. J. Ahmadi, R. Amiri, F. Behnia
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引用次数: 1

Abstract

One of the most important problems in radar systems is to transmit signal to target and receive echo signal with high SNR. We know from the communication concepts that if we integrate multiple noisy signals, increment in the power of desired signal is more than the increment in noise power. Thus, with a greater number of integrated signals, higher SNR can be obtained. A possible way to increase the number of received signals is extension in integration time. In airborne passive radars with long integration time, moving targets do not have unique range and velocity in range-Doppler surface. Indeed, the bistatic range and velocity of moving target vary during an extended integration time. In this paper we demonstrate that even targets without acceleration have variations in bistatic velocity. Further, we propose an algorithm to mitigate the impact of aforementioned variations.
长积分时间机载无源雷达距离和速度漂移的抑制
向目标发射信号并接收高信噪比的回波信号是雷达系统的一个重要问题。从通信概念中我们知道,如果对多个噪声信号进行积分,期望信号功率的增量大于噪声功率的增量。因此,集成信号的数量越多,信噪比就越高。增加接收信号数的一种可能方法是延长积分时间。在积分时间较长的机载无源雷达中,运动目标在距离-多普勒曲面上没有唯一的距离和速度。实际上,在一段较长的积分时间内,运动目标的双基地距离和速度会发生变化。本文证明了即使没有加速度的目标在双基地速度上也有变化。此外,我们提出了一种算法来减轻上述变化的影响。
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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