期刊文献+

Research on sound wave receiving theory of inertial sphere type vector hydrophone 被引量:3

Research on sound wave receiving theory of inertial sphere type vector hydrophone
原文传递
导出
摘要 Sound pressure wave and particle velocity wave of the receiving theory of iner- tial sphere type vector hydrophone was studied. Based on measurement principle of particle velocity hydrophone with co-oscillating sphere, the mathematical expressions of sound wave receiving response to both rigid sphere and elastic sphere in a freely moving acoustic plane- wave field were derived, and the relationship between the frequency response curves of velocity hydrophone and its geometrical dimension and density was analyzed. In addition, according to sound wave receiving theory of spherical receiving transducer, the mathematical expression of the vector hydrophone's sound pressure receiving response was derived, and the laws of the pressure distribution on the surface of particle velocity hydrophone and relationships between the pressure receiving coefficient of the vector hydrophone and the parameters, such as the dimensions of the receiving surface, the radius of the particle velocity hydrophone, the layout position and radius of sound pressure hydrophone, were analyzed and calculated. The analysis method of sound wave receiving theory of vector hydrophone was established, which lays the theoretical foundation for design and development of the vector hydrophone. Sound pressure wave and particle velocity wave of the receiving theory of iner- tial sphere type vector hydrophone was studied. Based on measurement principle of particle velocity hydrophone with co-oscillating sphere, the mathematical expressions of sound wave receiving response to both rigid sphere and elastic sphere in a freely moving acoustic plane- wave field were derived, and the relationship between the frequency response curves of velocity hydrophone and its geometrical dimension and density was analyzed. In addition, according to sound wave receiving theory of spherical receiving transducer, the mathematical expression of the vector hydrophone's sound pressure receiving response was derived, and the laws of the pressure distribution on the surface of particle velocity hydrophone and relationships between the pressure receiving coefficient of the vector hydrophone and the parameters, such as the dimensions of the receiving surface, the radius of the particle velocity hydrophone, the layout position and radius of sound pressure hydrophone, were analyzed and calculated. The analysis method of sound wave receiving theory of vector hydrophone was established, which lays the theoretical foundation for design and development of the vector hydrophone.
出处 《Chinese Journal of Acoustics》 2010年第4期386-400,共15页 声学学报(英文版)
基金 the National Natural Science Foundation of China(No.40827003)
  • 相关文献

参考文献6

二级参考文献31

  • 1Vladimir A. Shchurov,Marianna V. Kuyanova(Pacific Oceanological Institute, Far Eastern Branch of Russian Academg of Sciences Russia).Use of acoustic intensity measurements in underwater acoustics (Modern state and prospects)[J].Chinese Journal of Acoustics,1999,18(4):315-326. 被引量:9
  • 2孙贵青,李启虎.声矢量传感器信号处理[J].声学学报,2004,29(6):491-498. 被引量:53
  • 3贾志富.采用双迭片压电敏感元件的声压梯度水听器[J].传感器技术,1997,16(1):22-24. 被引量:12
  • 4孙贵青.矢量水听器检测技术研究,哈尔滨工程大学博士学位论文[M].哈尔滨,2001..
  • 5贾志富.同振球型声压梯度水听器的研究[J].应用声学,1997,16(3):20-25. 被引量:27
  • 6NEHORAI A, PALDI E. Acoustic vector-sensor array processing[J]. IEEE Trans Signal Processing. 1994,42(9):2481 - 2491.
  • 7HAWKES M, NEHORAI A. Acoustic vector-sensor beamforming and capon direction estimation [ J ]. IEEE Trans Signal Processing. 1998,46(9) :2291 - 2304.
  • 8KAINAM T W, MICHAEL D Z. Extented-aperture underwater acoustic multisource azimuth]elevation direction -fioding using uniformly but sparsely spaced vector hydrophones [J]. IEEE Oceanic Engineering. 1997, 22(4): 659-672.
  • 9尤立克R J 洪申(译).水声原理[M].哈尔滨:哈尔滨船舶工程学院出版社,1990..
  • 10Cray B A, Nutrall A H. Directivity factors for linear arrays of velocity sensors. J, Acoust. Soc. Am., 2001; 110(1):324-331

共引文献184

同被引文献12

引证文献3

二级引证文献14

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部