DocumentCode :
292250
Title :
Time-frequency representation adapted to chirp signals: application to analysis of sphere scattering
Author :
Ma, Ning ; Vray, Didier ; Delachartre, Philippe ; Dziedzic, Albin ; Gimenez, Gerard
Volume :
2
fYear :
1994
fDate :
Oct. 31 1994-Nov. 3 1994
Firstpage :
1139
Abstract :
This work deals with the analysis of underwater target echoes by means of time-frequency representation. The processed echoes have been collected during experiments with a wide band, constant beamwidth transducer emitting linear frequency modulation signals (chirp) in the frequency range of 10-150 kHz. Sphere echoes are multicomponent signals because of the superimposition of various propagation modes of the acoustic waves inside and around the sphere. It results that the whole sphere echo is a sum of superimposed chirp signals. We show that the analysis of the target echo by means of the now classical time-frequency representations gives a great deal of difficulties because of the resulting interferences. In this work, we propose a time-frequency representation adapted to chirp signals in which the interference can be considerably attenuated. Therefore the identification of the signal features are greatly simplified
Keywords :
acoustic wave scattering; chirp modulation; echo; interference suppression; sonar signal processing; sonar target recognition; time-frequency analysis; 10 to 150 kHz; acoustic wave propagation modes; chirp signals; interference attenuation; linear frequency modulation signals; multicomponent signals; sphere scattering; time-frequency representation; underwater target echoes; wideband chirp sonar; wideband constant beamwidth transducer; Chirp modulation; Echo interference; Frequency domain analysis; Interference suppression; Sonar scattering; Sonar signal analysis; Sonar target recognition; Spheres; Time domain analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium, 1994. Proceedings., 1994 IEEE
Conference_Location :
Cannes, France
Print_ISBN :
0-7803-2012-3
Type :
conf
DOI :
10.1109/ULTSYM.1994.401789
Filename :
401789
Link To Document :
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