DocumentCode
1832927
Title
On redundant human-robot interface: Concept and design principle
Author
Lihua Xue ; Liu, C.J. ; Lin, Y. ; Zhang, W.J.
Author_Institution
Dept. of Mech. & Power Eng., East China Univ. of Sci. & Technol., Shanghai, China
fYear
2015
fDate
7-11 July 2015
Firstpage
287
Lastpage
292
Abstract
This paper proposes a new type of interface called redundant interface. The redundant interface has two benefits: (1) improved resilience that is the interface system may still work when subject to some partial damage and (2) improved understanding comprehensiveness. The second contribution of the paper is the development of a systematic approach to designing interfaces including the redundant interface. The general philosophy behind the new approach is that an interface is viewed as a product instead of a part of the machine system or real world application system. By product, it further implies that the interface is not just a dimensionless system but a product or machine or robot. In the case that the interface by itself is a robot, the motion and posture of the robot may also be utilized in human-robot communication with an increased redundancy. With such a view, the design theory and methodology in general product development can be adapted to interface design. These theories and methodologies are further integrated with a theory called perceptual compatibility principle (PCP) known in the HCI community, resulting in a complete interface design methodology. An example of the subway station guiding system is used to illustrate the proposed idea and methodology.
Keywords
human-robot interaction; humanoid robots; legged locomotion; redundant manipulators; HCI; PCP; human-robot communication; improved resilience; improved understanding comprehensiveness; interface design methodology; machine system; perceptual compatibility principle; product development; real world application system; redundant human-robot interface; robot motion; robot posture; subway station guiding system; Color; Context; Layout; Redundancy; Robots;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Intelligent Mechatronics (AIM), 2015 IEEE International Conference on
Conference_Location
Busan
Type
conf
DOI
10.1109/AIM.2015.7222546
Filename
7222546
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