• DocumentCode
    1278920
  • Title

    Use of an analytic signal to model interaction between an acoustic wave and a moving target with a time-dependent velocity

  • Author

    Gimenez, G. ; Cachard, C. ; Vray, D.

  • Author_Institution
    Inst. Nat. des Sci. Appliques de Lyon, Villeurbanne, France
  • Volume
    37
  • Issue
    3
  • fYear
    1990
  • fDate
    5/1/1990 12:00:00 AM
  • Firstpage
    196
  • Lastpage
    204
  • Abstract
    The formalism of the analytic signal and its complex envelope is used to model the interaction between an acoustic wave and a moving target in applications involving the Doppler effect. Specifically, it is shown that modeling by means of analytic signal and related concepts is suitable for the interaction between a probing acoustic wave and the scatters included in the investigated medium through which the wave propagates. When such a scatterer is a moving target, the interaction can be viewed as an angular modulation: phase modulation or frequency modulation, depending on which parameter is used as the carried message. The act of demodulating by means of a two-channel lock-in amplifier follows this theoretical modeling closely because this device simply extracts the complex envelope from the modulated signal. In the case of a target with time-dependent velocity, this modeling is very useful because the experimental results are actually the instantaneous phase and the instantaneous frequency of the complex envelope associated with the modulated signal. In this sense the physical phenomenon of interaction between an acoustical wave and a moving target (Doppler effect) can be depicted easily and clearly. Experimental results obtained with a continuous probing wave interacting with a single bubble moving in a fluid at rest are given to illustrate the proposed approach.<>
  • Keywords
    Doppler effect; acoustic wave scattering; underwater sound; Doppler effect; acoustic wave; analytic signal; angular modulation; bubble; complex envelope; frequency modulation; instantaneous frequency; instantaneous phase; moving target; phase modulation; scatterer; time-dependent velocity; two-channel lock-in amplifier; Acoustic noise; Acoustic scattering; Acoustic signal detection; Acoustic waves; Amplifiers; Demodulation; Doppler effect; Signal analysis; Tomography; Underwater communication;
  • fLanguage
    English
  • Journal_Title
    Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-3010
  • Type

    jour

  • DOI
    10.1109/58.55309
  • Filename
    55309