Continued Investigation of the Use of Passive Resonators to Improve the Performance of a Low Frequency Sonar Transducer

Abstract

In an earlier thesis, Ellsworth showed that the radiated power output (quantified by the gain in radiation resistance presented to the transducer) and directivity of a compact underwater transducer can be significantly improved by the use of a system of resonant scatterers. These resonant scatterers were termed sympathetic resonators. In the present work, we verify the previous findings and extend the work to additional cases of interest. Specifically, we (1) employ equations requiring fewer assumptions and implement them using more accurate numerical techniques, (2) reproduce Ellsworth's calculations and provide graphical results for conical and planar circular configurations for the case of six passive acoustic resonators, (3) extend the theory to and provide results for two types of linear arrays of passive acoustic resonators, (4) and finally, we consider an acoustic Yagi-Uda antenna-like configuration of passive acoustic resonators to improve the directivity of an under-water transducer. The results indicate that the conical configuration of six resonators is the best choice in terms of the gain in radiated power output, directivity along an acoustic axis, and minimum required number of resonators. Low Frequency Active, Coupled Network Analysis, Passive Acoustic Resonators.

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Document Details

Document Type
Technical Report
Publication Date
Dec 01, 1991
Accession Number
ADA247066

Entities

People

  • David E. Sanders

Organizations

  • Naval Postgraduate School

Tags

Communities of Interest

  • Advanced Electronics
  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Acoustic Fields
  • Acoustic Impedance
  • Acoustic Resonators
  • Arrays
  • Equations
  • Far Field
  • Frequency
  • Geometry
  • Hydrostatic Pressure
  • Radiation
  • Radiation Resistance
  • Resistance
  • Resonant Frequency
  • Resonators
  • Sound Pressure
  • Three Dimensional
  • Transducers

Fields of Study

  • Physics

Readers

  • Electronics Engineering
  • Phased Array Antenna Design.