论文:2023,Vol:41,Issue(3):612-620
引用本文:
姚远, 孙超, 刘雄厚, 李明杨. 利用线谱声强干涉起伏相关系数估计波导不变量[J]. 西北工业大学学报
YAO Yuan, SUN Chao, LIU Xionghou, LI Mingyang. Waveguide invariant estimation based on correlation coefficient of tonal acoustic intensity interference fluctuation[J]. Journal of Northwestern Polytechnical University

利用线谱声强干涉起伏相关系数估计波导不变量
姚远1,2, 孙超1,2, 刘雄厚1,2, 李明杨3
1. 西北工业大学 航海学院, 陕西 西安 710072;
2. 陕西省水下信息技术重点实验室, 陕西 西安 710072;
3. 浙江大学 信息与电子工程学院, 浙江 杭州 310058
摘要:
针对低信噪比时难以利用低频分析记录谱中宽带连续谱条纹状干涉图样提取波导不变量的问题,提出了一种利用线谱声强干涉起伏相关系数估计波导不变量方法。该方法根据参考线谱声强干涉起伏与经过尺度伸缩变换的线谱声强干涉起伏之间存在的正比关系包含波导不变量这一事实,构造线谱声强干涉起伏相关系数以实现波导不变量估计。讨论在声源相对水听器径向和非径向2种运动模型下,将原始采样时刻代换为新的采样时刻,得到重采样后的线谱声强干涉起伏;利用相关系数表示重采样后的参考线谱声强干涉起伏与经过尺度伸缩变换后的线谱声强干涉起伏之间的相似程度,得到不同波导不变量搜索值下的相关系数,其峰值对应的搜索结果就是波导不变量真值。仿真实验和实测数据处理结果表明,所提方法能有效实现波导不变量估计。
关键词:    线谱声强    干涉起伏    相关系数    波导不变量   
Waveguide invariant estimation based on correlation coefficient of tonal acoustic intensity interference fluctuation
YAO Yuan1,2, SUN Chao1,2, LIU Xionghou1,2, LI Mingyang3
1. School of Marine Science and Technology, Northwestern Polytechnical University, Xi'an 710072, China;
2. Shaanxi Key Laboratory of Underwater Information Technology, Xi'an 710072, China;
3. College of Information Science and Electronic Engineering, Zhejiang University, Hangzhou 310058, China
Abstract:
The waveguide invariant is usually not extracted from the striation pattern of broadband continuous spectrum in the low frequency analysis and recording spectrum at low signal-to-noise ratio. In this paper, the correlation coefficient of multi-tonal acoustic intensity interference fluctuation is utilized to estimate waveguide invariant. Since the proportional relationship between the reference intensity interference fluctuation and the scaled intensity interference fluctuation is dependent on waveguide invariant, the waveguide invariant estimation can be done. Firstly, the tonal intensity interference fluctuation has been resampled in the new time domain under the radial and non-radial motion models respectively. Then, the similarity degree between the resampling reference tonal intensity interference fluctuation and the scaling tonal intensity interference fluctuation can be described by correlation coefficient, and the peak of correlation coefficient is corresponding to the true value. Finally, the numerical results and the experimental results prove the proposed method's effectiveness.
Key words:    tonal acoustic intensity    interference fluctuation    correlation coefficient    waveguide invariant   
收稿日期: 2022-08-22     修回日期:
DOI: 10.1051/jnwpu/20234130612
基金项目: 国家自然科学基金(11534009,12004335)资助
通讯作者: 孙超(1965—),西北工业大学教授,主要从事水声信号处理研究。e-mail:csun@nwpu.edu.cn     Email:csun@nwpu.edu.cn
作者简介: 姚远(1990—),西北工业大学博士研究生,主要从事水声目标位置估计研究。
相关功能
PDF(3585KB) Free
打印本文
把本文推荐给朋友
作者相关文章
姚远  在本刊中的所有文章
孙超  在本刊中的所有文章
刘雄厚  在本刊中的所有文章
李明杨  在本刊中的所有文章

参考文献:
[1] BREKHOVSKIKH L, LYSANOV Y. Fundamentals of Ocean Acoustics[M]. 2nd ed. New York, USA:Springer-Verlag, 1991:140-145
[2] 任云, 戚聿波, 周士弘, 等. 声强谱频移补偿的波导不变量和距离估计方法[J]. 声学学报, 2014, 39(3):319-323 REN Yun, QI Yubo, ZHOU Shihong, et al. Waveguide invariant and range estimation based on frequency-shift-compensation of underwater acoustic intensity spectrograms[J]. Acta Acustica, 2014, 39(3):319-323(in Chinese)
[3] ROUSEFF D, SPINDEL R C. Modeling the waveguide invariant as a distribution[C]//American Institute of Physics Conference, 2002:137-148
[4] GALL Y L, BONNEL J. Passive estimation of the waveguide invariant per pair of modes[J]. The Journal of the Acoustic Society of America, 2013, 134(2):EL230-EL236
[5] TURGUT A M, ROUSEFF D. Broadband source localization using horizontal-beam acoustic intensity striations[J]. The Journal of the Acoustic Society of America, 2010, 127(1):73-83
[6] 吴国清, 李靖, 陈耀明, 等. 舰船噪声识别(Ⅰ)——总体框架线谱分析和提取[J]. 声学学报, 1998, 23(5):394-400 WU Guoqing, LI Jing, CHEN Yaoming, et al. Ship radiated-noise recognition(Ⅰ) the overall framework, analysis and extraction of line-spectrum[J]. Acta Acustica, 1998, 23(5):394-400(in Chinese)
[7] HARMS A, ODOM J L, KROLIK J. Ocean acoustic waveguide invariant parameter estimation using tonal noise sources[C]//IEEE International Conference on Acoustics, Speech and Signal Processing, 2015
[8] YOUNG A, HARMS H, HICKMAN G. Waveguide-invariant-based ranging and receiver localization using tonal sources of opportunity[J]. IEEE Journal of Oceanic Engineering, 2019, 45(2):631-644
[9] 高大治, 翟林, 王好忠, 等. 利用线谱起伏实现目标测距[J]. 声学学报, 2017, 42(6):669-676 GAO Dazhi, ZHAI Lin, WANG Haozhong, et al. Passive ranging using the fluctuation of target tonal acoustic intensity[J]. Acta Acustica, 2017, 42(6):669-676(in Chinese)
[10] 徐国军, 笪良龙, 赵建昕, 等. 声场干涉结构相似度匹配的目标运动参数估计[J]. 声学学报, 2020, 45(4):527-534 XU Guojun, DA Lianglong, ZHAO Jianxin, et al. The target motion parameters estimation based on the acoustic interference structure similarity match[J]. Acta Acustica, 2020, 45(4):527-534(in Chinese)
[11] CHI Jing, GAO Dazhi, ZHAO Jianxin, et al. Motion parameter estimation of multitonal sources with a single hydrophone[J]. The Journal of the Acoustic Society of America, 2021, 1(1):EL1-EL6
[12] JENSEN F, KUPERMAN W, PORTER M, et al. Computational ocean acoustics[M]. New York, USA:Springer Science & Business Media, 2011:133-360
[13] 郭国强, 杨益新, 孙超, 等. 浅海低频本地海底混响的波导不变性结构及抑制方法研究[J]. 声学学报, 2009, 34(6):506-514 GUO Guoqiang, YANG Yixin, SUN Chao, et al. Waveguide invariance structure for low frequency monostatic bottom reverberation mitigation in shallow water[J]. Acta Acustica, 2009, 34(6):500-501(in Chinese)
[14] 张博轩, 杨益新, 郭西京. 抵消Wigner-Ville分布交叉项的窄带运动声源无源测速[J]. 声学学报, 2021, 46(6):974-982 ZHANG Boxuan, YANG Yixin, GUO Xijing. Cross-term rejection in the Wigner-Ville distribution for velocity estimation of a narrowband sound source[J]. Acta Acustica, 2021, 46(6):974-982(in Chinese)
[15] Marine Physical Laboratory. The SWellEx-96 Experiment[EB/OL]. (1996-05-10)[2023-02-15]. http://swellex96.ucsd.edu/index.htm