6533b838fe1ef96bd12a3e33

RESEARCH PRODUCT

An Electrooculography based Human Machine Interface for wheelchair control

Prasanna PorwalAjit M. ChoudhariVenkatesh JonnalageddaFabrice Meriaudeau

subject

Information transfermedicine.diagnostic_testbusiness.industryComputer scienceInterface (computing)0206 medical engineeringControl (management)Biomedical Engineering02 engineering and technologyElectrooculographyHuman Machine InterfaceEOG controlled wheelchairSingle channel BMI020601 biomedical engineeringWheelchairAssistive technologyAsynchronous communication0202 electrical engineering electronic engineering information engineeringmedicine[SDV.IB]Life Sciences [q-bio]/Bioengineering020201 artificial intelligence & image processingbusinessSimulationCommunication channelGraphical user interface

description

International audience; This paper presents a novel single channel Electrooculography (EOG) based efficient Human–Machine Interface (HMI) for helping the individuals suffering from severe paralysis or motor degenerative diseases to regain mobility. In this study, we propose a robust system that generates control command using only one type of asynchronous eye activity (voluntary eye blink) to navigate the wheelchair without a need of graphical user interface. This work demonstrates a simple but robust and effective multi-level threshold strategy to generate control commands from multiple features associated with the single, double and triple voluntary eye blinks to control predefined actions (forward, right turn, left turn and stop). Experimental trials were carried out on the able-bodied and disabled subjects to validate the universal applicability of the algorithms. It achieved an average command detection and execution accuracy of 93.89% with information transfer rate (ITR) of 62.64 (bits/min) that shows the robust, sensitive and responsive features of the presented interface. In comparison with the established state of art similar HMI systems, our system achieved a better trade-off between higher accuracy and better ITR and while maintaining better performance in all qualitative and quantitative criteria. The results confirm that the proposed system offers a user-friendly, cost-effective and reliable alternative to the existing EOG-based HMI.

https://doi.org/10.1016/j.bbe.2019.04.002