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May 15, 2026Technologies0 citationsOpen Access

Non-Prosthetic Assistive Technologies for Persons with Hearing Losses: A Survey

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RAReemas AlsubaieiFAFarah AlHayekMAMariam Alsahhaf

Key Points

  • This survey aims to explore non-prosthetic assistive technologies for individuals with hearing loss, addressing their unique needs.
  • Review non-prosthetic assistive technologies leveraging sensing and AI.
  • Categorize technologies based on tasks performed and operating platforms.
  • Identify key research trends and challenges in the field.
  • Technologies enhance environmental awareness, communication, and social interaction among users.
  • Integration of auditory, visual, and haptic modalities improves usability in noisy environments.
  • Challenges include energy efficiency, latency, and user acceptance of new technologies.

Abstract

Millions of persons worldwide experience varying degrees of hearing loss, traditionally addressed through prosthetic solutions such as hearing aids and cochlear implants. However, a significant proportion of individuals cannot benefit from these technologies, cannot access them, or choose not to use them. In this context, non-prosthetic assistive technologies have emerged as a complementary paradigm, leveraging advances in sensing, artificial intelligence, and wearable computing to transform acoustic information into alternative perceptual representations rather than restoring auditory function. This survey provides a review of such systems, focusing on technologies that enhance environmental awareness, communication, and social interaction. Existing approaches are categorized along two main dimensions: the tasks they perform and the platforms on which they operate. Task-oriented analysis includes sound recognition (speech and non-speech), sound source localization, emotion recognition, sign language recognition, and related emerging functionalities. Platform-based analysis emphasizes wearable devices and mobile solutions enabling real-time and context-aware assistance. The survey further highlights key research trends, including real-time auditory scene analysis, portable processing, and artificial intelligence. It shows that recent studies increasingly demonstrate that combining auditory, visual, and haptic modalities improves robustness and usability in real-world conditions, particularly in noisy and dynamic environments. Finally, open challenges such as energy efficiency, latency, evaluation methodologies, and user acceptance are discussed. By synthesizing existing work and identifying open research directions, this survey aims to provide a structured foundation for future developments in intelligent, non-prosthetic assistive systems that redefine how auditory information is accessed and interpreted.

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Cite This Study

Alsubaiei et al. (2026) studied this question.

synapsesocial.com/papers/6a06b971e7dec685947ac280https://doi.org/10.3390/technologies14050302
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