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一种适用于 UUV 的宽带波束形成器,用于检测船舶辐射的音调。

A Broadband Beamformer Suitable for UUV to Detect the Tones Radiated from Marine Vessels.

机构信息

Acoustic Science and Technology Laboratory, Harbin Engineering University, Harbin 150001, China.

College of Underwater Acoustic Engineering, Harbin Engineering University, Harbin 150001, China.

出版信息

Sensors (Basel). 2018 Sep 3;18(9):2928. doi: 10.3390/s18092928.

Abstract

In this paper, the issue that the underwater unmanned vehicle (UUV) with a sonar array achieves the passive detection of vessel targets by detecting the tones radiated from the targets is considered. The multi-beam low-frequency analysis and recording method is widely applied in a manned sonar system. The sonar operator provides an auxiliary decision to extract the target tones from the multiple beams output. However, the complexity of the multi-dimensional information fusion makes it difficult to apply the multi-beam processing in the unmanned sonar system. Aiming at this problem, we introduce the self-adjusting characteristics of adaptive line enhancer to a time domain broadband beamformer and then propose a self-steering broadband beamformer. The proposed beamformer can adaptively steer the main beam to the direction-of-arrival (DOA) of the tonal target. There is no need to pre-form the multiple beams. The complexity of the UUV-based tone detection is reduced. Theoretical derivation and simulation experiments verify that the main beam of the proposed beamformer can track the DOA of tonal target which is rapidly changing. Meanwhile, the tonal interferences as well as the wide-band noise are well suppressed.

摘要

本文考虑了声纳阵水下无人航行器(UUV)通过检测目标辐射的音调来实现对舰船目标的被动检测的问题。多波束低频分析和记录方法广泛应用于有人声纳系统中。声纳操作员提供辅助决策,从多个波束输出中提取目标音调。然而,多维信息融合的复杂性使得难以将多波束处理应用于无人声纳系统。针对这一问题,我们将自适应线增强器的自调整特性引入时域宽带波束形成器中,然后提出了一种自导向宽带波束形成器。所提出的波束形成器可以自适应地将主波束导向音调目标的到达方向(DOA)。无需预先形成多个波束。降低了基于 UUV 的音调检测的复杂性。理论推导和仿真实验验证了所提出的波束形成器的主波束可以跟踪快速变化的音调目标的 DOA。同时,很好地抑制了音调干扰和宽带噪声。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1659/6163713/ef124c06be81/sensors-18-02928-g001.jpg

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