Latent space representation for multi-target speaker detection and identification with a sparse dataset using Triplet neural networks

10/01/2019
by   Kin Wai Cheuk, et al.
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We present an approach to tackle the speaker recognition problem using Triplet Neural Networks. Currently, the i-vector representation with probabilistic linear discriminant analysis (PLDA) is the most commonly used technique to solve this problem, due to high classification accuracy with a relatively short computation time. In this paper, we explore a neural network approach, namely Triplet Neural Networks (TNNs), to built a latent space for different classifiers to solve the Multi-Target Speaker Detection and Identification Challenge Evaluation 2018 (MCE 2018) dataset. This training set contains i-vectors from 3,631 speakers, with only 3 samples for each speaker, thus making speaker recognition a challenging task. When using the train and development set for training both the TNN and baseline model (i.e., similarity evaluation directly on the i-vector representation), our proposed model outperforms the baseline by 23 the train set, our method results in 309 confusions for the Multi-target speaker identification task, which is 46 results show that the representational power of TNNs is especially evident when training on small datasets with few instances available per class.

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