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Deep-Learning-Based Automated Classification of Chinese Speech Sound Disorders.

Yao-Ming Kuo1, Shanq-Jang Ruan1, Yu-Chin Chen2

  • 1Department of Electronic and Computer Engineering, National Taiwan University of Science and Technology, Taipei 106, Taiwan.

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|July 27, 2022
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Summary
This summary is machine-generated.

This study developed a computer system to diagnose children's speech sound disorders (SSDs) in Chinese. Using neural networks and acoustic data, it accurately identified four common SSD types, achieving 74.4% accuracy.

Keywords:
Chinese speech sound disorder datasetartificial intelligencemachine learningspeech disfluency classificationspeech sound disorder

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Area of Science:

  • Computational Linguistics
  • Speech Pathology
  • Artificial Intelligence

Background:

  • Children's speech sound disorders (SSDs) present diagnostic challenges.
  • Accurate classification of SSDs is crucial for effective intervention.
  • Automated analysis systems can support clinical diagnosis.

Purpose of the Study:

  • To develop and evaluate a computer-based system for diagnosing and classifying four types of Chinese SSDs.
  • To assess the performance of neural network models in analyzing acoustic speech data.
  • To investigate the utility of Mel-frequency cepstral coefficients (MFCCs) for SSD classification.

Main Methods:

  • A speech corpus of 2540 samples from 90 children (aged 3-6) with specific SSDs (stopping, backing, FCDP, affrication) was created.
  • Speech samples were annotated by two speech-language pathologists (SLPs).
  • Three neural network models were used for classification, with MFCCs as input features and data augmentation techniques applied.

Main Results:

  • The system demonstrated accuracy in detecting analyzed pronunciation disorders across different Chinese phrase categories.
  • The best multi-class classification using a single Chinese phrase achieved an accuracy of 74.4%.
  • Experiments confirmed the system's ability to differentiate between normal and pathological speech patterns.

Conclusions:

  • The developed system shows promise for assisting in the diagnosis and classification of children's speech sound disorders.
  • Neural network analysis of acoustic features, like MFCCs, is a viable approach for SSD detection.
  • Further research can refine the system for broader application in speech pathology.