Title: A multi-granularity approach for estimating the sustainability of a factory simulation model: semiconductor packaging as an example
Authors: Chen, Toly
Wang, Li-Chih
Chiu, Min-Chi
工業工程與管理學系
Department of Industrial Engineering and Management
Keywords: Simulation;Sustainability;Strategy;Packaging;Semiconductor
Issue Date: 1-Oct-2018
Abstract: Dynamic factory simulation has been considered as an effective means to control a factory. However, the large amount of money, time, efforts, and know-how required for conducting a factory simulation study force a factory to pursue the persistent application of the factory simulation model, i.e. the sustainability of the factory simulation model. Therefore, strategies are required to facilitate the rapid establishment of the factory simulation model, to lower the technical requirements of the model, and to reduce the effort and time spent on simulation tasks, thus increasing users' willingness to continue the application of the model. However, such issues have rarely been discussed. In addition, no method is available for estimating the sustainability of a factory simulation model. To address this problem, short-time evidence was analyzed rather than observing data over a long period. Then, a multi-granularity approach is proposed to estimate the sustainability of a factory simulation model based on these evidences. The proposed methodology has been applied to the simulation of a real semiconductor packaging facility. According to the experimental results, the multi-granularity approach reduced the input space by 89% and maintained a very high estimation accuracy. In addition, it also saved considerable time in building the models for estimating sustainability. Furthermore, without the multi-granularity approach, the sustainability of the factory simulation model could be observed only after a long period.
URI: http://dx.doi.org/10.1007/s12351-017-0342-5
http://hdl.handle.net/11536/148184
ISSN: 1109-2858
DOI: 10.1007/s12351-017-0342-5
Journal: OPERATIONAL RESEARCH
Volume: 18
Begin Page: 711
End Page: 729
Appears in Collections:Articles