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학술지 A Deconvolutive Neural Network for Speech Classification With Applications to Home Service Robot
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저자
Donglin Wang, Henry Leung, Ajeesh P. Kurian, 김혜진, 윤호섭
발행일
201012
출처
IEEE Transactions on Instrumentation and Measurement, v.59 no.12, pp.3237-3243
ISSN
0018-9456
출판사
IEEE
DOI
https://dx.doi.org/10.1109/TIM.2010.2047551
협약과제
10MC4300, u-로봇 HRI 솔루션 및 핵심 소자 기술 개발, 조재일
초록
Reverberation deteriorates the quality and intelligibility of speech, leading to the poor performance of classification systems. Room reverberation parameters depend on the location of the speaker and the microphone and the room geometry. For mobile robots, the reverberation is constantly changing due to the relative movement of the speaker and the robot. This can affect the spectral properties of the signal and therefore, the classification accuracy. The contribution of this paper is a new network architecture, which uses neural network constant modulus algorithm (NNCMA) based equalizer followed by a multi-layer preceptron (MLP) classifier. NNCMA is an MLP which is trained with a cost function similar to constant modulus algorithm (CMA). With this two-stage structure, the classifier does not have to consider the time-varying nature of the reverberation. The proposed algorithm is applied to speech samples collected by the home service robot WEVER-R2 for speaker classification in a typical home or office environment. We use them for gender classification application. The proposed neural network was found to have 83.73% of classification accuracy for age classification and 88.91% of classification accuracy for gender classification, while the standard MLP had a classification accuracy of 71.43% and 72.29%, respectively. © 2006 IEEE.
키워드
Blind deconvolution, constant modulus algorithm (CMA), multilayer perceptron, neural network, reverberation, robotics, speech classification
KSP 제안 키워드
Age Classification, Blind Deconvolution, Classification system, Constant Modulus Algorithm(CMA), Cost Function, Mobile robots, Multi-layer Preceptron(MLP), Network Architecture, Neural networks, Relative movement, Room geometry