Channel isolation and range sidelobe suppression for instantaneous full-polarization radar

Xiongjun Fu, Honghua Yan, Lizhi Zhao, Cai Wang, M. Gao
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引用次数: 0

Abstract

Polarization is quite useful for target detection and identification since it is an intrinsic property of targets. The real polarization scattering matrix (PSM) namely Sinclair scattering matrix must be acquired by instantaneous full polarization measurements. For the requirement of full polarization measurement to radar targets instantaneously, a solution to the two key issues on channel isolation and sidelobe suppression is proposed here from the perspective of waveform design and echo processing. The required waveform characteristics for instantaneous full polarization radar and the demands of sidelobe suppression performance were reviewed. Channel isolation is guaranteed by orthogonal Waveform Design, and the performance of auto-correlation and Doppler tolerance is obtained at the same time. A novel signal transmission guideline is designed based on comprehensive utilization of positive and negative chirp rate linear frequency-modulation (LFM) waveform and orthogonal phase-coded waveform hopping pulse to pulse randomly. Effective sidelobe reduction is achieved by inter-pulse information processing. What's more, the signal-to-noise ratio (SNR) and the performance of low probability of intercept radar are improved simultaneously.
瞬时全极化雷达的信道隔离和距离旁瓣抑制
极化是目标的固有特性,在目标检测和识别中非常有用。实极化散射矩阵即辛克莱散射矩阵必须通过瞬时全极化测量得到。针对实时对雷达目标进行全极化测量的要求,从波形设计和回波处理的角度,提出了通道隔离和旁瓣抑制两个关键问题的解决方案。综述了瞬时全极化雷达所需的波形特性和对旁瓣抑制性能的要求。通过正交波形设计保证了信道隔离,同时获得了自相关性能和多普勒容忍性能。综合利用正负啁啾率线性调频(LFM)波形和脉冲随机跳频的正交相位编码波形,设计了一种新的信号传输准则。通过脉冲间信息处理实现了有效的旁瓣抑制。同时提高了低概率拦截雷达的信噪比和性能。
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