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http://dx.doi.org/10.5143/JESK.2011.30.5.683

Development of a Distributed Representative Human Model Generation and Analysis System for Multiple-Size Product Design  

Lee, Baek-Hee (Department of Industrial and Management Engineering, POSTECH)
Jung, Ki-Hyo (School of Industrial Engineering, University of Ulsan)
You, Hee-Cheon (Department of Industrial and Management Engineering, POSTECH)
Publication Information
Journal of the Ergonomics Society of Korea / v.30, no.5, 2011 , pp. 683-688 More about this Journal
Abstract
Objective: The aim of this study is to develop a distributed representative human model(DRHM) generation and analysis system. Background: DRHMs are used for a product with multiple-size categories such as clothing and shoes. It is not easy for a product designer to explore an optimal sizing system by applying various distributed methods because of their complexity and time demand. Method: Studies related to DRHM generation were reviewed and the RHM generation interfaces of three digital human model simulation systems(Jack$^{(R)}$, RAMSIS$^{(R)}$, and CATIA Human$^{(R)}$) were reviewed. Results: DRHM generation steps are implemented by providing sophisticated interfaces which offer various statistical techniques and visualization methods with ease. Conclusion: The DRHM system can analyze the multivariate accommodation percentage of a sizing system, provide body sizes of generated DRHMs, and visualize generated grids and DRHMs. Application: The DRHM generation and analysis system can be of great use to determine an optimal sizing system for a multiple-size product by comparing various sizing system candidates.
Keywords
Multiple-size product design; Sizing system; Distributed representative human model;
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Times Cited By KSCI : 1  (Citation Analysis)
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1 Robinette, K. M. and Annis, J. F., A Nine-Size System for Chemical Defense Gloves (Technical Report AAMRL-TR-86-029), Ohio: Wright-Patterson Air Force Base, 1986.
2 Rosenblad-Wallin, E., An anthropometric study as the basis for sizing anatomically designed mittens, Applied Ergonomics, 18(4), 329-333, 1987.   DOI
3 Zheng, R., Yu, W. and Fan, J., Development of a new Chinese bra sizing system based on breast anthropometric measurements, International Journal of Industrial Ergonomics, 37, 697-705, 2007.   DOI
4 HFES 300, Guidelines for Using Anthropometric Data in Product Design, Santa Monica, California: Human Factors and Ergonomics Society, 2004.
5 Jung, K., Kwon, O. and You, H., Development of a digital human model generation method for ergonomic design in virtual environment, International Journal of Industrial Ergonomics, 39(5), 744-748, 2009.   DOI
6 Laing, R. M., Holland, E. J. and Niven, B. E., Development of sizing systems for protective clothing for the adult male, Ergonomics, 42(10), 1249-1257, 1999.   DOI
7 Jung, K., Development of a Multivariate Representative Human Model generation Method for Anthropometric Design, Unpublished Ph.D. dissertation, Pohang University of Science and Technology, Pohang, Korea, 2009.
8 Jung, K., You, H. and Kwon, O., Evaluation of the multivariate accommodation performance of the grid method, Applied Ergonomics, 42, 156-161, 2010.   DOI
9 Kwon, O., Jung, K., You, H. and Kim H., Determination of key dimensions for a glove sizing system by analyzing the relationship between hand dimensions. Applied Ergonomics, 40, 762-766, 2009.   DOI
10 Lee, B., Chang, Y., Jung, K., Jung, I. and You, H, Ergonomic evaluation of a control room design of radioactive waste facility using digital human simulation, Journal of the Ergonomics Society of Korea, 29(3), 383-391, 2010.   과학기술학회마을   DOI
11 McCulloch, C. E., Paal, B. and Ashdown, S. P., An optimization approach to apparel sizing, Journal of the Operational Research Society, 49, 492-499, 1998.   DOI
12 Park, J., Jung, K., Lee, W., Kang, B., Lee, J., Eom, J., Park, S. and You, H., Development of an ergonomic assessment method of helicopter cockpit using digital human simulation, In Proceedings of the 2008 Spring Conference of the Ergonomics Society of Korea, 2008.
13 Gordon, C., et al. 1988 Anthropometric Survey of US Army Personnel: Methods and Summary Statistics, Technical Report NATICK/TR-89/ 044, 1988.
14 Chaffin, D. B., Improving digital human modeling for proactive ergonomics in design. Ergonomics, 48(5), 478-491, 2005.   DOI