EOG Communication Interface for Quadriplegics: Prototype & Signal Processing

Fuente: arXiv
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Auteurs principaux: Raj, Aniket, Kumar, Amit
Format: Preprint
Publié: 2025
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author Raj, Aniket
Kumar, Amit
author_facet Raj, Aniket
Kumar, Amit
contents Electrooculography (EOG) is an electrophysiological signal that determines the human eye orientation and is therefore widely used in Human Tracking Interfaces (HCI). The purpose of this project is to develop a communication method for quadriplegic patients using EOG signals aimed at text and voice generation. The system consists of 3D eye movement tracking embedded using a custom-built prototype to measure the eyeball's left-right and up-down movements. The ESP32 board, which has a set of parameters to convert the data into content displayed on LCDs and MP3 players, is used to capture and process the signal. helps people by facilitating more natural and efficient symptom expression. The blink system will be able to incorporate face masks and more eye tests as it continues to develop. Even if it might work, more research and clinical trials are needed to evaluate the system's usefulness and ensure that it performs as planned in real-world scenarios. With this project, assistive technology will make significant progress and improve the lives of many who suffer from severe motor impairments.
format Preprint
id arxiv_https___arxiv_org_abs_2501_02465
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle EOG Communication Interface for Quadriplegics: Prototype & Signal Processing
Raj, Aniket
Kumar, Amit
Signal Processing
Systems and Control
Electrooculography (EOG) is an electrophysiological signal that determines the human eye orientation and is therefore widely used in Human Tracking Interfaces (HCI). The purpose of this project is to develop a communication method for quadriplegic patients using EOG signals aimed at text and voice generation. The system consists of 3D eye movement tracking embedded using a custom-built prototype to measure the eyeball's left-right and up-down movements. The ESP32 board, which has a set of parameters to convert the data into content displayed on LCDs and MP3 players, is used to capture and process the signal. helps people by facilitating more natural and efficient symptom expression. The blink system will be able to incorporate face masks and more eye tests as it continues to develop. Even if it might work, more research and clinical trials are needed to evaluate the system's usefulness and ensure that it performs as planned in real-world scenarios. With this project, assistive technology will make significant progress and improve the lives of many who suffer from severe motor impairments.
title EOG Communication Interface for Quadriplegics: Prototype & Signal Processing
topic Signal Processing
Systems and Control
url https://arxiv.org/abs/2501.02465