Reconstruction and prediction of multi-source acoustic field with the distributed source boundary point method based nearfield acoustic holography

被引:0
作者
Chuanxing Bi
Jian Chen
Xinzhao Chen
机构
[1] Hefei University of Technology,Dynamic Measuring Center
来源
Science in China Series E: Technological Sciences | 2004年 / 47卷
关键词
acoustic holography; boundary point; distributed source; acoustic radiation;
D O I
暂无
中图分类号
学科分类号
摘要
In a multi-source acoustic field, the actual measured pressure is a scalar sum of pressures from all the sources. The pressure belonging to every source cannot be separated out with the existing techniques. Consequently, routine formulas cannot be used to reconstruct the acoustic source and predict the acoustic field directly. In this paper, a novel theoretical model of reconstruction and prediction of multi-source acoustic field in the distributed source boundary point method (DSBPM) based nearfield acoustic holography (NAH) is established. Three different methods, namely combination method with single surface measurement, combination method with multi-surface measurement and elimination method with multi-surface measurement, are proposed to realize the holographic reconstruction of sources. With these methods, the problem of reconstruction and prediction of acoustic field existing multiple coherent sources synchronously is solved effectively. Using the particular solutions constructed by the DSBPM to establish the vibro-acoustic transfer matrix, the calculation time, calculation precision and calculation stability are improved. These methods are valuable in localizing acoustic source and predicting acoustic field in engineering field.
引用
收藏
页码:216 / 228
页数:12
相关论文
共 24 条
  • [1] Williams E. G.(1980)Sound source reconstruction using a microphone array J. Acoust. Soc. Am. 68 340-344
  • [2] Maynard J. D.(1985)Nearfield acoustic holography I: theory of generalized holography and development of NAH J. Acoust. Soc. Am. 78 1395-1413
  • [3] Skudrzyk E.(1987)Nearfield acoustic holography(NAH) II: Holographic reconstruction algorithms and computer implementation J. Acoust. Soc. Am. 81 1307-1322
  • [4] Maynad J. D.(1989)Digital holographic reconstruction of source with arbitrarily shaped surfaces J. Acoust. Soc. Am. 85 588-598
  • [5] Williams E. G.(1988)A noise source identification technique using an inverse Helmholtz integral equation method Tans. of ASME, Journal of Vib. and Acoust. Stress, Reliab. Des. 110 84-90
  • [6] Lee Y.(1992)Application of BEM (boundary element method)-based acoustic holography to radiation analysis of sound sources with arbitrarily shaped geometries J. Acoust. Soc. Am. 92 533-549
  • [7] Veronesi W. A.(1996)On the reconstruction of the vibro-acoustic field over the surface enclosing an interior space using the boundary element method J. Acoust. Soc. Am. 100 3003-3016
  • [8] Maynard J. D.(1999)The boundary point method for the calculation of exterior acoustic radiation problem Journal of Sound and Vibration 228 761-772
  • [9] Veronesi W. A.(1998)The volume source boundary point method and its application to an acoustic radiation calculation Journal of Vibration Engineering 11 395-400
  • [10] Maynard J. D.(1997)All particular solution boundary element method analyzing acoustic radiation by structure Journal of Vibration Engineering 9 341-347