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A Bioinspired Twin Inverted Multiscale Matched Filtering Method for Detecting an Underwater Moving Target in a Reverberant Environment

机译:生物启发的双反相多尺度匹配滤波方法在混响环境中检测水下运动目标

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摘要

To this day, biological sonar systems still have great performance advantages over artificial sonar systems, especially for detection in environments with clutter, strong reverberation, and a low signal to noise ratio (SNR). Therefore, mammal sonar systems, for instance, bats and toothed whales, have many characteristics worth learning from. This paper proposes a bioinspired twin inverted multiscale matched filtering method to detect underwater moving targets. This method can be mainly divided into three parts. Firstly, a hyperbolic frequency modulation (HFM) continuous wave (CW) multiharmonic detection signal was adopted after analyzing signals from bats and dolphins. This signal combines the advantages of CW and HFM signals and has excellent time measurement and speed measurement performance when detecting a moving target. Secondly, the twin inverted waveform was introduced to suppress strong linear reverberation and highlight moving targets. The pulse interval was determined by assessing the reverberation reduction time. Thirdly, when processing echoes, a multiscale matched filtering method was proposed to make use of multiharmonic information and improve detection performance. Finally, a channel pool experiment was carried out to test the performance of the proposed method. The experimental result demonstrates that the proposed method has better performance when detecting a moving target in a reverberant environment compared to the conventional matched filtering method. Related results can be applied to small underwater platforms or sensor network platforms for target detection and coastal defense applications.
机译:时至今日,生物声纳系统仍比人工声纳系统具有巨大的性能优势,尤其是在杂波,强烈混响和低信噪比(SNR)的环境中进行检测时。因此,哺乳动物声纳系统,例如蝙蝠和齿鲸,具有许多值得借鉴的特性。本文提出了一种基于生物启发的孪生反向多尺度匹配滤波方法来检测水下运动目标。该方法主要可以分为三个部分。首先,在对蝙蝠和海豚发出的信号进行分析之后,采用了双曲频率调制(HFM)连续波(CW)多谐波检测信号。该信号结合了CW和HFM信号的优点,并且在检测运动目标时具有出色的时间测量和速度测量性能。其次,引入了孪生反相波形以抑制强烈的线性混响并突出移动目标。通过评估混响减少时间来确定脉冲间隔。第三,在处理回波时,提出了一种多尺度匹配滤波方法,以利用多谐波信息并提高检测性能。最后,进行了信道池实验以测试所提方法的性能。实验结果表明,与常规匹配滤波方法相比,该方法在混响环境中检测运动目标时具有更好的性能。相关结果可以应用于小型水下平台或传感器网络平台,以进行目标检测和海防应用。

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