Production Allocation for Printed Circuit Board Assembly - Surface Mount Technology Lines
碩士 === 國立清華大學 === 工業工程與工程管理學系 === 94 === The study proposed a practical optimization method for production line configuration and continued to optimize the order release schedule for a Printed Circuit Board assembly line base on Surface Mount Technology. The research was composed of three stages. In...
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ndltd-TW-094NTHU50310782015-12-16T04:42:36Z http://ndltd.ncl.edu.tw/handle/03390751472943770613 Production Allocation for Printed Circuit Board Assembly - Surface Mount Technology Lines 電路板組裝線之投料配置–以SMT生產線為例 Chuan-Wen Cheng 鄭川文 碩士 國立清華大學 工業工程與工程管理學系 94 The study proposed a practical optimization method for production line configuration and continued to optimize the order release schedule for a Printed Circuit Board assembly line base on Surface Mount Technology. The research was composed of three stages. In the first stage, a strategy was proposed to determine optimal machine configuration base on predicated production needs, bottleneck machines, financial analysis, and Analysis of Variance. In the second stage, Linear Integer Programming was used to determine the order release schedule base on the selected line configuration in the first stage. In the third stage, simulation was used to compare the production efficiency with the results from proposed line configuration and order release strategy. The result shows that the production efficiency of the combined optimized line configuration and order release performed better than the existing line configuration and order release policy by 43.41%. Daniel Sheu 許棟樑 2006 學位論文 ; thesis 100 zh-TW |
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碩士 === 國立清華大學 === 工業工程與工程管理學系 === 94 === The study proposed a practical optimization method for production line configuration and continued to optimize the order release schedule for a Printed Circuit Board assembly line base on Surface Mount Technology. The research was composed of three stages. In the first stage, a strategy was proposed to determine optimal machine configuration base on predicated production needs, bottleneck machines, financial analysis, and Analysis of Variance. In the second stage, Linear Integer Programming was used to determine the order release schedule base on the selected line configuration in the first stage. In the third stage, simulation was used to compare the production efficiency with the results from proposed line configuration and order release strategy.
The result shows that the production efficiency of the combined optimized line configuration and order release performed better than the existing line configuration and order release policy by 43.41%.
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Daniel Sheu |
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Daniel Sheu Chuan-Wen Cheng 鄭川文 |
author |
Chuan-Wen Cheng 鄭川文 |
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Chuan-Wen Cheng 鄭川文 Production Allocation for Printed Circuit Board Assembly - Surface Mount Technology Lines |
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Chuan-Wen Cheng |
title |
Production Allocation for Printed Circuit Board Assembly - Surface Mount Technology Lines |
title_short |
Production Allocation for Printed Circuit Board Assembly - Surface Mount Technology Lines |
title_full |
Production Allocation for Printed Circuit Board Assembly - Surface Mount Technology Lines |
title_fullStr |
Production Allocation for Printed Circuit Board Assembly - Surface Mount Technology Lines |
title_full_unstemmed |
Production Allocation for Printed Circuit Board Assembly - Surface Mount Technology Lines |
title_sort |
production allocation for printed circuit board assembly - surface mount technology lines |
publishDate |
2006 |
url |
http://ndltd.ncl.edu.tw/handle/03390751472943770613 |
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