Multi-skeleton model for top-down design of complex products
Generally, there are two alternative design approaches available to engineers: bottom-up and top-down. Considering the sharp increase in the complexity of most mechanical products, the top-down design approach is more widely adopted in the development of complex products. However, in traditional top...
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doaj-69752de963284751a2c9f465ff601c792020-11-25T03:09:33ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402016-05-01810.1177/168781401665121010.1177_1687814016651210Multi-skeleton model for top-down design of complex productsDexin Chu0Guolin Lyu1Xuening Chu2Jing Shen3Department of Industrial Engineering & Management, School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai, P.R. ChinaDepartment of Mechanical and Manufacturing Engineering, University of Calgary, Calgary, AB, CanadaDepartment of Industrial Engineering & Management, School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai, P.R. ChinaShanghai Institute of Satellite Engineering, Shanghai, P.R. ChinaGenerally, there are two alternative design approaches available to engineers: bottom-up and top-down. Considering the sharp increase in the complexity of most mechanical products, the top-down design approach is more widely adopted in the development of complex products. However, in traditional top-down design process, design parameters are communicated through single-skeleton models, and design units are strongly coupled due to the multi-dimensional complexity of products. Toward this end, a new top-down design approach based on multi-skeleton model is proposed in this article. First, in accordance with different kinds of design parameters, three major skeleton models are defined, including location skeleton model, published skeleton model, and design skeleton model. And the characteristics of multi-skeleton models are also described. Then, the top-down design process based on the multi-skeleton model is explored, especially in the multi-skeleton modeling phase. It is also illustrated in detail that how to realize design parameter transmission and design unit reuse. Subsequently, it elaborates the communicating way and structure optimization of design parameters to support parameters controlled publishing and design units reuse. Finally, a meteorological satellite and a crawler crane design cases are implemented to expound the feasibility and effectiveness of the proposed framework.https://doi.org/10.1177/1687814016651210 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dexin Chu Guolin Lyu Xuening Chu Jing Shen |
spellingShingle |
Dexin Chu Guolin Lyu Xuening Chu Jing Shen Multi-skeleton model for top-down design of complex products Advances in Mechanical Engineering |
author_facet |
Dexin Chu Guolin Lyu Xuening Chu Jing Shen |
author_sort |
Dexin Chu |
title |
Multi-skeleton model for top-down design of complex products |
title_short |
Multi-skeleton model for top-down design of complex products |
title_full |
Multi-skeleton model for top-down design of complex products |
title_fullStr |
Multi-skeleton model for top-down design of complex products |
title_full_unstemmed |
Multi-skeleton model for top-down design of complex products |
title_sort |
multi-skeleton model for top-down design of complex products |
publisher |
SAGE Publishing |
series |
Advances in Mechanical Engineering |
issn |
1687-8140 |
publishDate |
2016-05-01 |
description |
Generally, there are two alternative design approaches available to engineers: bottom-up and top-down. Considering the sharp increase in the complexity of most mechanical products, the top-down design approach is more widely adopted in the development of complex products. However, in traditional top-down design process, design parameters are communicated through single-skeleton models, and design units are strongly coupled due to the multi-dimensional complexity of products. Toward this end, a new top-down design approach based on multi-skeleton model is proposed in this article. First, in accordance with different kinds of design parameters, three major skeleton models are defined, including location skeleton model, published skeleton model, and design skeleton model. And the characteristics of multi-skeleton models are also described. Then, the top-down design process based on the multi-skeleton model is explored, especially in the multi-skeleton modeling phase. It is also illustrated in detail that how to realize design parameter transmission and design unit reuse. Subsequently, it elaborates the communicating way and structure optimization of design parameters to support parameters controlled publishing and design units reuse. Finally, a meteorological satellite and a crawler crane design cases are implemented to expound the feasibility and effectiveness of the proposed framework. |
url |
https://doi.org/10.1177/1687814016651210 |
work_keys_str_mv |
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