Isolating scattering resonances of an air-filled spherical shell using iterative, single-channel time reversal
Iterative, single-channel time reversal is employed to isolate backscattering resonances of an air-filled spherical shell in a frequency range of 0.5-20kHz. Numerical simulations of free-field target scattering suggest improved isolation of the dominant target response frequency in the presence of v...
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Veröffentlicht in: | The Journal of the Acoustical Society of America 2012, Vol.131 (1), p.318-326 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Iterative, single-channel time reversal is employed to isolate backscattering resonances of an air-filled spherical shell in a frequency range of 0.5-20kHz. Numerical simulations of free-field target scattering suggest improved isolation of the dominant target response frequency in the presence of varying levels of stochastic noise, compared to processing returns from a single
transmission and also coherent averaging. To test the efficacy of the technique in a realistic littoral environment, monostatic scattering experiments are conducted in the Gulf of Mexico near Panama City, Florida. The time reversal technique is applied to returns from a hollow spherical shell target sitting proud on a sandy bottom in 14m deep water. Distinct resonances in the scattering response of the target are isolated, depending upon the bandwidth of the sonar system utilized. |
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ISSN: | 0001-4966 1520-8524 |
DOI: | 10.1121/1.3669971 |