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arxiv: 1908.00493 · v1 · pith:UVP52RCN · submitted 2019-08-01 · cs.LG · cs.CL· cs.SD· eess.AS· stat.ML

Learning Joint Acoustic-Phonetic Word Embeddings

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classification cs.LG cs.CLcs.SDeess.ASstat.ML
keywords wordlearningvectorswordsacousticbinaryclassificationdistance
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Most speech recognition tasks pertain to mapping words across two modalities: acoustic and orthographic. In this work, we suggest learning encoders that map variable-length, acoustic or phonetic, sequences that represent words into fixed-dimensional vectors in a shared latent space; such that the distance between two word vectors represents how closely the two words sound. Instead of directly learning the distances between word vectors, we employ weak supervision and model a binary classification task to predict whether two inputs, one of each modality, represent the same word given a distance threshold. We explore various deep-learning models, bimodal contrastive losses, and techniques for mining hard negative examples such as the semi-supervised technique of self-labeling. Our best model achieves an $F_1$ score of 0.95 for the binary classification task.

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