声学技术2024,Vol.43Issue(2) :275-280.DOI:10.16300/j.cnki.1000-3630.2024.02.017

基于反卷积的双线阵聚焦波束形成被动定位方法

Research on passive localization algorithm based on twin-line array deconvolved focused beamforming

马超 梅继丹 陈奕宏
声学技术2024,Vol.43Issue(2) :275-280.DOI:10.16300/j.cnki.1000-3630.2024.02.017

基于反卷积的双线阵聚焦波束形成被动定位方法

Research on passive localization algorithm based on twin-line array deconvolved focused beamforming

马超 1梅继丹 2陈奕宏1
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作者信息

  • 1. 中国船舶科学研究中心,江苏无锡 214082;深海技术科学太湖实验室,江苏无锡 214082
  • 2. 哈尔滨工程大学水声技术重点实验室,黑龙江哈尔滨 150001;海洋信息获取与安全工信部重点实验室(哈尔滨工程大学),黑龙江哈尔滨 150001;哈尔滨工程大学水声工程学院,黑龙江哈尔滨 150001
  • 折叠

摘要

为了提高双线阵聚焦波束形成在阵元数少或频率低时的定位精度,文章研究了一种基于反卷积的双线阵聚焦波束形成被动定位方法.首先在测量区内对双线阵接收信号进行球面波补偿,给出噪声源分布的声图信息.然后根据阵型的参数,计算双线阵的指向性函数.最后利用一种适用于移变阵列的二维扩展R-L反卷积算法,对声图波束输出和双线阵的指向性函数做反卷积,求解基于反卷积波束形成的源的分布.该方法旁瓣更低,分辨力更高,有效提高双线阵聚焦波束形成的定位精度和左右舷分辨能力,为后续的减振降噪、噪声检测等工作提供了参考.

Abstract

In order to improve the positioning accuracy of twin-line array focused beamforming when the number of elements is small or the frequency is low,a passive positioning method for twin-line array based on deconvolved focused beamforming is studied in this paper.In this method,spherical wave compensation is performed on the received signal of the twin-line array in the measurement area,and then the acoustic image of the noise source distribution is given.According to the parameters of the array,the directivity function of the twin-line array is calculated.Finally,a two-dimensional extended R-L deconvolution algorithm suitable for shift-variant array is used to deconvolve the output of the acoustic beam and the directivity function,and the source distribution based on the deconvolved focused beamforming is solved.This method has lower side lobes and higher resolution,which effectively improves the positioning accuracy and the resolution of port/starboard ambiguity and provides a reference for noise and vibration reduction,noise detection and other research work.

关键词

反卷积/聚焦波束形成/声源定位/定位精度

Key words

deconvolution/focused beamforming/source localization/positioning accuracy

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基金项目

国家自然科学基金(92252205)

出版年

2024
声学技术
中科院声学所东海研究站,同济大学声学所,上海市声学学会,上海船舶电子设备研究所

声学技术

CSTPCDCSCD北大核心
影响因子:0.415
ISSN:1000-3630
参考文献量15
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