DocumentCode
26364
Title
Human Performance Measures for Interactive Haptic-Audio-Visual Interfaces
Author
Dawei Jia ; Bhatti, A. ; Nahavandi, S. ; Horan, Ben
Author_Institution
Centre for Intell. Syst. Res., Deakin Univ., Geelong, VIC, Australia
Volume
6
Issue
1
fYear
2013
fDate
First Quarter 2013
Firstpage
46
Lastpage
57
Abstract
Virtual reality and simulation are becoming increasingly important in modern society and it is essential to improve our understanding of system usability and efficacy from the users´ perspective. This paper introduces a novel evaluation method designed to assess human user capability when undertaking technical and procedural training using virtual training systems. The evaluation method falls under the user-centered design and evaluation paradigm and draws on theories of cognitive, skill-based and affective learning outcomes. The method focuses on user interaction with haptic-audio-visual interfaces and the complexities related to variability in users´ performance, and the adoption and acceptance of the technologies. A large scale user study focusing on object assembly training tasks involving selecting, rotating, releasing, inserting, and manipulating three-dimensional objects was performed. The study demonstrated the advantages of the method in obtaining valuable multimodal information for accurate and comprehensive evaluation of virtual training system efficacy. The study investigated how well users learn, perform, adapt to, and perceive the virtual training. The results of the study revealed valuable aspects of the design and evaluation of virtual training systems contributing to an improved understanding of more usable virtual training systems.
Keywords
haptic interfaces; learning (artificial intelligence); virtual reality; cognitive outcomes; evaluation method; human performance measures; human user capability; interactive haptic-audio-visual interfaces; learning outcomes; multimodal information; object assembly; procedural training; skill-based outcomes; system usability; technical training; three-dimensional objects; user performance; user perspective; virtual reality; virtual simulation; virtual training system efficacy; Ergonomics; Haptic interfaces; Training; User centered design; User interfaces; Virtual reality; Human haptics; ergonomics; user interaction; user-centered design; virtual training evaluation;
fLanguage
English
Journal_Title
Haptics, IEEE Transactions on
Publisher
ieee
ISSN
1939-1412
Type
jour
DOI
10.1109/TOH.2012.41
Filename
6247430
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