Title :
Underwater target classifier using modified Kaiser-Bessel window
Author :
Binesh, T. ; Supriya, M.H. ; Pillai, P. R. Saseendran
Author_Institution :
Dept. of Electron., Cochin Univ. of Sci. & Technol., Kochi, India
Abstract :
Underwater target classification has got numerous applications in ocean systems and technologies. The selection of suitable source specific features in a classifier system is one of the major factors determining the efficiency and efficacy of the classifier. The spectral features, when suitably modified, can provide certain essential clues suitable for the design of underwater signal classifiers. In this paper, a non-stochastic underwater target classifier, making use of an efficient feature set based on modified Kaiser-Bessel window, operating in the frequency domain is proposed. The proposed classifier is making use of a Matching Parameter which is a functional measure of the Mahalanobis and Euclidean distances and utilizes an algorithmic vector quantization approach as well for cluster formation. The system performance has been studied and fairly acceptable success rates have been obtained for the proposed underwater target classifier, making use of a modified Kaiser-Bessel window.
Keywords :
acoustic signal processing; frequency-domain analysis; oceanographic equipment; signal classification; vector quantisation; Euclidean distance; Mahalanobis distance; algorithmic vector quantization approach; cluster formation; frequency domain; matching parameter; modified Kaiser-Bessel window; nonstochastic underwater target classifier; ocean system; ocean technology; underwater target classification; Classification algorithms; Distortion measurement; Feature extraction; Frequency-domain analysis; Noise; Support vector machine classification; Training; Frequency domain windowing; Mahalanobis Distance; Modified Kaiser-Bessel window; Underwater target classifier;
Conference_Titel :
Ocean Electronics (SYMPOL), 2013
Conference_Location :
Kochi
Print_ISBN :
978-93-80095-45-5
DOI :
10.1109/SYMPOL.2013.6701915