Shortest-Path Optimization of Ship Diesel Engine Disassembly and Assembly Based on AND/OR Network
Ship diesel engine disassembly and assembly (SDEDA) is essential for ship inspection and maintenance and navigation safety. The SDEDA consists of various machinery parts and operations. It is crucial to develop a system of SDEDA operations to improve the efficiency of disassembly and assembly (D&...
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doaj-04ace7ec719c4e47ac28f482caafdd1e2020-11-25T01:02:19ZengHindawi-WileyComplexity1076-27871099-05262020-01-01202010.1155/2020/29196152919615Shortest-Path Optimization of Ship Diesel Engine Disassembly and Assembly Based on AND/OR NetworkDeng-Zhi Chen0Chen Wei1Guo-Ling Jia2Zhi-Hua Hu3Merchant Marine College, Shanghai Maritime University, Shanghai, 201306, ChinaLogistics Research Center, Shanghai Maritime University, Shanghai, 201306, ChinaSchool of Highway, Chang’an University, Xi’an, Shaanxi Province, 710054, ChinaLogistics Research Center, Shanghai Maritime University, Shanghai, 201306, ChinaShip diesel engine disassembly and assembly (SDEDA) is essential for ship inspection and maintenance and navigation safety. The SDEDA consists of various machinery parts and operations. It is crucial to develop a system of SDEDA operations to improve the efficiency of disassembly and assembly (D&A). Considering the “AND” and “OR” relations (modeled as links) among the D&A operations (modeled as nodes), an “AND/OR” network is developed to extend a specialized graph model for the D&A sequencing problem in the context of education and training. Then, we devised a mixed-integer linear program (MILP) to optimize the SDEDA sequence based on the AND/OR network. Considering the flow balance in the AND/OR network, we developed exact algorithms and random search algorithms using breadth-first, branch cut and depth-first strategies to minimize the cost of the shortest path that represents an optimal sequence of D&A operations. To the best of our knowledge, it is the first try to formulate the D&A operations by an extended network model. Numerical experiments show that the proposed algorithms are practical for solving large-scale instances with more than 2000 D&A operations. The breadth-first shortest-path algorithm outperforms the MILP solver from the perspective of solution quality and computing time, and all developed algorithms are competitive in terms of computing time.http://dx.doi.org/10.1155/2020/2919615 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Deng-Zhi Chen Chen Wei Guo-Ling Jia Zhi-Hua Hu |
spellingShingle |
Deng-Zhi Chen Chen Wei Guo-Ling Jia Zhi-Hua Hu Shortest-Path Optimization of Ship Diesel Engine Disassembly and Assembly Based on AND/OR Network Complexity |
author_facet |
Deng-Zhi Chen Chen Wei Guo-Ling Jia Zhi-Hua Hu |
author_sort |
Deng-Zhi Chen |
title |
Shortest-Path Optimization of Ship Diesel Engine Disassembly and Assembly Based on AND/OR Network |
title_short |
Shortest-Path Optimization of Ship Diesel Engine Disassembly and Assembly Based on AND/OR Network |
title_full |
Shortest-Path Optimization of Ship Diesel Engine Disassembly and Assembly Based on AND/OR Network |
title_fullStr |
Shortest-Path Optimization of Ship Diesel Engine Disassembly and Assembly Based on AND/OR Network |
title_full_unstemmed |
Shortest-Path Optimization of Ship Diesel Engine Disassembly and Assembly Based on AND/OR Network |
title_sort |
shortest-path optimization of ship diesel engine disassembly and assembly based on and/or network |
publisher |
Hindawi-Wiley |
series |
Complexity |
issn |
1076-2787 1099-0526 |
publishDate |
2020-01-01 |
description |
Ship diesel engine disassembly and assembly (SDEDA) is essential for ship inspection and maintenance and navigation safety. The SDEDA consists of various machinery parts and operations. It is crucial to develop a system of SDEDA operations to improve the efficiency of disassembly and assembly (D&A). Considering the “AND” and “OR” relations (modeled as links) among the D&A operations (modeled as nodes), an “AND/OR” network is developed to extend a specialized graph model for the D&A sequencing problem in the context of education and training. Then, we devised a mixed-integer linear program (MILP) to optimize the SDEDA sequence based on the AND/OR network. Considering the flow balance in the AND/OR network, we developed exact algorithms and random search algorithms using breadth-first, branch cut and depth-first strategies to minimize the cost of the shortest path that represents an optimal sequence of D&A operations. To the best of our knowledge, it is the first try to formulate the D&A operations by an extended network model. Numerical experiments show that the proposed algorithms are practical for solving large-scale instances with more than 2000 D&A operations. The breadth-first shortest-path algorithm outperforms the MILP solver from the perspective of solution quality and computing time, and all developed algorithms are competitive in terms of computing time. |
url |
http://dx.doi.org/10.1155/2020/2919615 |
work_keys_str_mv |
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1715870974790860800 |