Acoustic recognition method in low SNR based on human ear bionics

Author:

Lin Zhaodong,Di Changan,Chen Xiong,Hou Yahui

Publisher

Elsevier BV

Subject

Acoustics and Ultrasonics

Reference33 articles.

1. Zhang Wenjuan. Study on target sound recognition system based on auditory bionics[J]. Changchun institute of optics, fine mechanics and physics, Chinese academy of science. 2012.

2. Influence of target on the target-background contrast;Yi;Chin J Quant Electron,2005

3. The study of speech visualization;Jiajun,2015

4. A model for discharge patterns of primary auditory-nerve fibers;Geisler;Brain Res,1981

5. Brain-Like Navigation Scheme based on MEMS-INS and Place Recognition.

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