基于相位编码线性啁啾的多用户和MIMO雷达系统离散频率编码波形设计

Arijit Roy, D. Deb, H. Nemade, R. Bhattacharjee
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引用次数: 6

摘要

为了成功探测目标,在多用户雷达系统和多输入多输出(MIMO)雷达系统中工作的波形之间应保持最小的相互关系。本文提出了利用线性啁啾(LC)脉冲和伪噪声(PN)编码序列设计离散频率编码波形(DFCW),以提高波形的自相关旁瓣峰(ASP)和互相关峰(CCP)水平。针对多用户MIMO雷达系统,提出了一种两阶段优化算法,以实现不同波形之间的相互关联最小。在第一阶段,对波形的频率发射序列进行优化,在第二阶段,对pn码序列进行优化,以获得整体优化波形。分析了所提波形在多用户MIMO雷达系统中的性能。与使用其他可用DFCW设计的多用户和MIMO雷达系统的性能相比,使用所提出波形的雷达系统在保持较低的ASP和CCP水平方面性能更好。此外,还给出了所提波形在多普勒频率变化下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Discrete Frequency-Coding Waveforms Using Phase-Coded Linear Chirp for Multiuser and MIMO Radar Systems
To perform successful detection of a target, the waveforms operating in a multiuser radar system and multiple-input-multiple-output (MIMO) radar system should maintain minimum cross-correlations among themselves. In this paper, design of discrete frequency-coding waveform (DFCW) using linear chirp (LC) pulse and pseudo-noise (PN) code sequence is proposed to improve the autocorrelation sidelobe peak (ASP) and cross-correlation peak (CCP) levels of the waveforms. To achieve minimum cross-correlation levels between different waveforms, for a multiuser and MIMO radar system, a two-stage optimization process is proposed. In the first stage, optimization of the frequency-firing sequence of the waveforms is performed and in the second stage, PN-code sequence optimization is performed in order to obtain the overall optimized waveforms. The performance of the proposed waveforms in a multiuser and MIMO radar system is analyzed. In comparison with the performance of multiuser and MIMO radar system designed using other available DFCW, the performances of the radar systems using proposed waveforms are better in terms of maintaining lower ASP and CCP levels. In addition, performance of the proposed waveforms under Doppler frequency variation is also presented.
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