Journal Article

·2020

Physiological Data-Based Evaluation of a Social Robot Navigation System

Hasan Kivrak , Pınar Uluer , Hatice Köse , Elif Gümüşlü , Duygun Erol Barkana , Furkan Çakmak YTU , Sırma Yavuz YTU

Abstract

The aim of this work is to create a social navigation system for an affective robot that acts as an assistant in the audiology department of hospitals for children with hearing impairments. Compared to traditional navigation systems, this system differentiates between objects and human beings and optimizes several parameters to keep at a social distance during motion when faced with humans not to interfere with their personal zones. For this purpose, social robot motion planning algorithms are employed to generate human-friendly paths that maintain humans' safety and comfort during the robot's navigation. This paper evaluates this system compared to traditional navigation, based on the surveys and physiological data of the adult participants in a preliminary study before using the system with children. Although the self-report questionnaires do not show any significant difference between navigation profiles of the robot, analysis of the physiological data may be interpreted that, the participants felt comfortable and less threatened in social navigation case.

Keywords

Computer science Robot Mobile robot Social robot Mobile robot navigation Human–computer interaction Artificial intelligence Computer vision Robot control

Subject Areas

Social Robot Interaction and HRI ·Social Psychology ·Social Sciences
Tactile and Sensory Interactions ·Cognitive Neuroscience ·Life Sciences
Robotics and Automated Systems ·Control and Systems Engineering ·Physical Sciences

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