基于信号相关杂波的目标检测的调相波形设计

Tao Mao, Xuhua Gong, H. Meng, Xiqin Wang
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引用次数: 4

摘要

要考虑的问题是实际雷达系统中受信号相关杂波回波和加性信道噪声污染的扩展目标的相位调制波形设计。首先介绍了一种基于最大化接收机输出端信噪比(SCNR)的带限雷达扩展目标检测的最优波形设计算法,并给出了最优信号能谱密度(ESD)的解析解。为了充分利用传输功率,提出了一种恒包络调相波形的相位迭代设计算法,通过使最优波形与设计波形的均方谱距最小,实现了较小的SCNR损耗。大量的仿真结果表明,当信号持续时间大于1 μs时,该方法的SCNR损耗小于1 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase-modulated waveform design for the target detection in the presence of signal-dependent clutter
The problem to be considered is a phase-modulated waveform design for detection of extended targets contaminated by signal-dependent clutter returns and additive channel noise in practical radar systems. We first introduce an optimal waveform design algorithm for extended target detection in a band-limited radar system by maximizing the signal-to-clutter-and-noise ratio (SCNR) at the output of the receiver, and give the analytical solution of the optimal signal energy spectral density (ESD). In order to make full use of the transmission power, a phase iterative algorithm to design the phase-modulated waveform with constant envelop is proposed, which is proven to be able to achieve a small SCNR loss by minimizing the mean-square spectral distance between the optimal waveform and the designed one. The results of extensive simulations illustrate that our approach provides less than 1 dB SCNR loss when the signal duration is greater than 1 μs.
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