Author:
Apraiz Ainhoa,Mulet Alberola Jose Antonio,Lasa Ganix,Mazmela Maitane,Nguyen Hien Ngoc
Abstract
Humans and robots will increasingly have to work together in the new industrial context. Therefore, it is necessary to improve the User Experience, Technology Acceptance, and overall wellbeing to achieve a smoother and more satisfying interaction while obtaining the maximum performance possible out of it. For this reason, it is essential to analyze these interactions to enhance User Experience. The heuristic evaluation is an easy-to-use, low-cost method that can be applied at different stages of a design process in an iterative manner. Despite these advantages, there is rarely a list of heuristics in the current literature that evaluates Human-Robot interactions both from a User Experience, Technology Acceptance, and Human-Centered approach. Such an approach should integrate key aspects like safety, trust, and perceived safety, ergonomics and workload, inclusivity, and multimodality, as well as robot characteristics and functionalities. Therefore, a new set of heuristics, namely, the HEUROBOX tool, is presented in this work in the form of the HEUROBOX tool to help practitioners and researchers in the assessment of human-robot systems in industrial environments. The HEUROBOX tool clusters design guidelines and methodologies as a logic list of heuristics for human-robot interaction and comprises four categories: Safety, Ergonomics, Functionality, and Interfaces. They include 84 heuristics in the basic evaluation, while the advanced evaluation lists a total of 228 heuristics in order to adapt the tool to the evaluation of different industrial requirements. Finally, the set of new heuristics has been validated by experts using the System Usability Scale (SUS) questionnaire and the categories has been prioritized in order of their importance in the evaluation of Human-Robot Interaction through the Analytic Hierarchy Process (AHP).
Subject
Artificial Intelligence,Computer Science Applications
Reference78 articles.
1. Usability guidelines for the design of robot teleoperation: A taxonomy;Adamides;IEEE Trans. Human-Machine Syst.,2014
2. Heuristic evaluation of the user interface for a semi-autonomous agricultural robot sprayer;Adamides;AGRIS On-Line Pap. Econ. Inf.,2020
3. Towards the development of a haptics guideline in human-robot systems;Andonovski,2010
4. Evaluación heurística de la interacción persona-robot en entornos industriales;Apraiz;Interacción,2022
5. Evaluation of user experience in human–robot interaction: A systematic literature review;Apraiz;Int. J. Soc. Robotics
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