Time-reversal based detection of buried objects in waveguide environments

Xiang Pan, Huixia Shu, Yuan-xin Xu, Nan Wang
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Abstract

For improvement of detection of a buried object in shallow water, a robust time reversal detection approach is proposed. Time reversal processing (TRP) is commonly applied for signal enhancement in a homogenous medium. In this paper, time reversal focusing in non-homogenous media is theoretically analyzed based on a wave propagation equation. From the perspective of beamforming, TRP is equivalent to active matched field processing (MFP). It is necessary to consider the robustness of TRP in an uncertain environment. Thus an optimum algorithm with multiple constraints is combined with the TRP scheme for designing time reversal beams to ensonify a target of interest. The tank experimental results verify the theoretical analysis of time reversal focusing in layered media. The proposed time reversal processing scheme works well in detection of a buried object in a waveguide tank. Moreover, by robust time reversal we can achieve a processing gain of 11.8 dB.
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波导环境中基于时间反转的地埋目标检测
为了提高浅水目标的检测精度,提出了一种鲁棒时间反转检测方法。时间反转处理(TRP)通常用于均匀介质中的信号增强。本文从波传播方程出发,对非均匀介质中的时间反转聚焦问题进行了理论分析。从波束形成的角度来看,TRP相当于主动匹配场处理(MFP)。有必要考虑在不确定环境下TRP的鲁棒性。在此基础上,将多约束优化算法与TRP方案相结合,设计时间反转波束,实现对目标的共振。槽内实验结果验证了层状介质中时间反转聚焦的理论分析。所提出的时间反转处理方案对波导槽中埋地目标的检测效果良好。此外,通过鲁棒时间反转,我们可以实现11.8 dB的处理增益。
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