An Instant Manufacturing Routing Decision Model for Unrelated Parallel Machine

碩士 === 逢甲大學 === 工業工程與系統管理學系 === 107 === In recent years, the concept of industry 4.0 has become increasingly popular. As labor costs become more expensive, Traditional manufacturing are gradually changing their operation mode. Overall intelligence of the factory must be the trend of the future. Manu...

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Main Authors: TSOU,SHU-HUI, 鄒淑惠
Other Authors: LU,MING-SHIUN
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/v76keg
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spelling ndltd-TW-106FCU000310132019-05-16T00:52:40Z http://ndltd.ncl.edu.tw/handle/v76keg An Instant Manufacturing Routing Decision Model for Unrelated Parallel Machine 非相關平行機台之即時決策生產模式 TSOU,SHU-HUI 鄒淑惠 碩士 逢甲大學 工業工程與系統管理學系 107 In recent years, the concept of industry 4.0 has become increasingly popular. As labor costs become more expensive, Traditional manufacturing are gradually changing their operation mode. Overall intelligence of the factory must be the trend of the future. Manufacturing procedure is changing from few different styles with large number to many different styles with small number. At present, mechanical automation production is mainly doing a large number of repetitive tasks, and it is necessary to set up the manufacturing procedure and the necessary tools in advance. Multiplicity of work in parallel machines cause long waiting times. The factory must first integrate the operation technology and information system of the internal objects to achieve the goal of intelligent production process. In this study, Plant Simulation is used to simulate the environment and establish a virtual flexible manufacturing site. In the virtual factory, there are M kinds of non-related parallel machines, which can produce K kinds of products. The purpose of the experiment is to observe the situation of K kinds of different products in M kinds of non-related parallel machines in different modes of traditional and instant delivery. Analyze the entire process of the workpiece in the simulation system, find out the best route from each node to another node, using system internal Simtalk syntactic to write out workpiece’s assignment method to solve it. The production system is a complex integrated system with many factors affecting the system, but the problems existing in the process can be solved by system simulation. The purpose of this study is to enable the workpiece to be transmitted efficiently to each machine and to calculate the optimal production path. The performance indicators discussed are - total completion Time (MakeSpan) and Mean flow Time, and compare the difference between the fixed transfer mode of traditional factories and the real-time transmission mode of industry 4.0. LU,MING-SHIUN 盧銘勳 2018 學位論文 ; thesis 58 zh-TW
collection NDLTD
language zh-TW
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description 碩士 === 逢甲大學 === 工業工程與系統管理學系 === 107 === In recent years, the concept of industry 4.0 has become increasingly popular. As labor costs become more expensive, Traditional manufacturing are gradually changing their operation mode. Overall intelligence of the factory must be the trend of the future. Manufacturing procedure is changing from few different styles with large number to many different styles with small number. At present, mechanical automation production is mainly doing a large number of repetitive tasks, and it is necessary to set up the manufacturing procedure and the necessary tools in advance. Multiplicity of work in parallel machines cause long waiting times. The factory must first integrate the operation technology and information system of the internal objects to achieve the goal of intelligent production process. In this study, Plant Simulation is used to simulate the environment and establish a virtual flexible manufacturing site. In the virtual factory, there are M kinds of non-related parallel machines, which can produce K kinds of products. The purpose of the experiment is to observe the situation of K kinds of different products in M kinds of non-related parallel machines in different modes of traditional and instant delivery. Analyze the entire process of the workpiece in the simulation system, find out the best route from each node to another node, using system internal Simtalk syntactic to write out workpiece’s assignment method to solve it. The production system is a complex integrated system with many factors affecting the system, but the problems existing in the process can be solved by system simulation. The purpose of this study is to enable the workpiece to be transmitted efficiently to each machine and to calculate the optimal production path. The performance indicators discussed are - total completion Time (MakeSpan) and Mean flow Time, and compare the difference between the fixed transfer mode of traditional factories and the real-time transmission mode of industry 4.0.
author2 LU,MING-SHIUN
author_facet LU,MING-SHIUN
TSOU,SHU-HUI
鄒淑惠
author TSOU,SHU-HUI
鄒淑惠
spellingShingle TSOU,SHU-HUI
鄒淑惠
An Instant Manufacturing Routing Decision Model for Unrelated Parallel Machine
author_sort TSOU,SHU-HUI
title An Instant Manufacturing Routing Decision Model for Unrelated Parallel Machine
title_short An Instant Manufacturing Routing Decision Model for Unrelated Parallel Machine
title_full An Instant Manufacturing Routing Decision Model for Unrelated Parallel Machine
title_fullStr An Instant Manufacturing Routing Decision Model for Unrelated Parallel Machine
title_full_unstemmed An Instant Manufacturing Routing Decision Model for Unrelated Parallel Machine
title_sort instant manufacturing routing decision model for unrelated parallel machine
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/v76keg
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