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A shared control architecture based on electrooculogram signal and global vision for smart assistive robots

Lei Sun, Hua Chen, YangQuan Chen

Year
2017
Citations
3

Abstract

Assistive robots play an increasingly important role in the lives of people with disabilities. More and more research efforts are being focused on using Electrooculogram (EOG) signals in driving assistive robots. This paper presents a new shared control architecture based on EOG signal and global vision for assistive robots. This paper firstly introduces the shared control concept with detailed block diagrams and then presents the work flow process of EOG signal acquisition and angle recognition. A state machine design is also presented that makes the control command transfer sequentially. Finally, control strategies of intent conflict and intent consistency, respectively, are also presented for different intent expression scenarios. Experiment results demonstrate that the shared control architecture proposed in this paper is effective that can reduce the user's operational load significantly.

Keywords

Computer scienceRobotBlock (permutation group theory)Human–computer interactionSIGNAL (programming language)Consistency (knowledge bases)Control (management)ArchitectureProcess (computing)Artificial intelligence

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