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논문 기본 정보

자료유형
학술대회자료
저자정보
Hyunsoo Lee (Kumoh National Institute of Technology) Sangho Kim (Kumoh National Institute of Technology)
저널정보
대한인간공학회 대한인간공학회 학술대회논문집 대한인간공학회 2012 추계학술대회
발행연도
2012.11
수록면
363 - 368 (6page)

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초록· 키워드

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Objective: What this paper focuses on is a stipulation of Design Compatibility (DC) between human and other device using contactless interfaces. While other research studies attempt to design human gestures with ergonomics and easy human cognitions, another important criterion for contactless interfaces – Detecting mechanism and interpretation processes in device – is considered and evaluated. Background: As sensor technologies are being developed outstandingly and the demand for contactless interfaces is rising explosively, various interface designs and cognition methodologies have been studied in Industrial Engineering fields. Even though valuable findings and research results have been suggested, most of them are dependent on device’s abilities and reasoning mechanisms. In addition, due to the fact that other research areas in Electronic Engineering and/or Computer Science and Engineering tends to ignore human-oriented design, the design and control considering both human and device fails to keep up with industrial demands. With this background, this paper focuses on the Design Compatibility between the object and the subject. Method: In order to evaluate current human gesture with respect to a device with visual recognition functions, a stereotype example, the numeral representations using the sign language are tested. When a numeric signal from a subject is processed by a stereovision device, the interpretation rate and classification errors are analyzed. Human posture conveniences and cognitions are evaluated using the proposed methods. Then, more effective hand gestures are selected using posture parameters considering both experiments and analyses. Results and Conclusion: The design compatibility considering human and a device with stereovision is tested using posture parameters such as a hand’s global coordinates and Euler rotating angles. As results, the ranges of Euler angles and their sensitivities are provided. Application: The research results are used for designing visual gestures in devices’ control. In addition, the proposed methods are considered for measuring the Design Compatibility.

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ABSTRACT
1. Introduction
2. Background and literature review
3. Experimental framework and device
4. Experiment results and analysis
5. Conclusion
References

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