计算机科学
矢量量化
稳健性(进化)
神经编码
特征提取
模式识别(心理学)
人工智能
语音识别
稀疏逼近
特征(语言学)
Mel倒谱
特征向量
支持向量机
编码(社会科学)
数学
生物化学
化学
语言学
哲学
统计
基因
作者
Richard F. Lyon,Jay Ponte,Gal Chechik
标识
DOI:10.1109/icassp.2011.5947698
摘要
A key problem in using the output of an auditory model as the input to a machine-learning system in a machine-hearing application is to find a good feature-extraction layer. For systems such as PAMIR (passive-aggressive model for image retrieval) that work well with a large sparse feature vector, a conversion from auditory images to sparse features is needed. For audio-file ranking and retrieval from text queries, based on stabilized auditory images, we took a multi-scale approach, using vector quantization to choose one sparse feature in each of many overlapping regions of different scales, with the hope that in some regions the features for a sound would be stable even when other interfering sounds were present and affecting other regions. We recently extended our testing of this approach using sound mixtures, and found that the sparse-coded auditory-image features degrade less in interference than vector-quantized MFCC sparse features do. This initial success suggests that our hope of robustness in interference may indeed be realizable, via the general idea of sparse features that are localized in a domain where signal components tend to be localized or stable.
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