Research

year 1997 
author Kidong Kim 
Keyword Integrated Manufacturing System, Process Planning, Scheduling, AND/OR Graph, Branch and Bound 
Abstract In most manufacturing environment, manufacturing activities can be classified into two main domains. One is the domain of manufacturing technology and the other is the domain of manufacturing planning and control. Design, process planning, and manufacturing activities belong to the former, and MPS, MRP and scheduling belong to the latter. Traditionally, activities of the above two domains were performed separately. However, they should be integrated to make manufacturing systems more efficient.

In this thesis, we endeavor to integrate the process planning and scheduling activities as an attempt to integrate the two realms which traditionally had been treated separately. To draw up a plan of process planning and scheduling in real manufacturing environment is not an easy task because available time to plan could be limited and the shop status could change frequently. So we propose an architecture of integrated process planning and scheduling system which can settle the integrated process planning and scheduling problem within the allowed time even if shop situations change rather frequently. Also we propose solution algorithms for the problems derived by the system.

The inputs to the proposed system (named as IPPSS, Integrated Process Planning and Scheduling System) are the shop status, the information about orders, the allowed time for the plan, and the AND/OR graph which represents the process plan of part. The IPPSS is composed of three main modules and one supplementary module. The main modules, which are directly related to process planning and scheduling are the emergency module, the iterative module, and the integrated module. The supplementary module can convert the data used in the integrated system to EXPRESS language and vice versa. Each of these three main modules can generate solution but the quality of solution from the integration module is better - i.e. more optimum - than iterative module, and also the iterative module better than from emergency module, etc. However the time to get solutions gets longer in reverse order. One of three main modules is selected based on the allowed time for the plan in this proposed system so that we can always plan the best solution for each condition.

The emergency module solves the process planning and scheduling problem one by one. In this module, the AND/OR graph is modified to ´AND/OR graph with time window´. And then, an algorithm which finds the shortest path from the start node to terminal node is applied to the ´AND/OR graph with time window´.

The iterative module generates the process plan and the schedule sequentially and fixes the process plan after verifying the performance of the schedule using simulation study. In this module, the process plan is generated by selecting the operations to be performed and the machines to manufacture parts with the objective of balancing the weighted load. And then, a simulation study is performed using dispatching rules and the makespan is determined from the result of the simulation study. The checking procedure checks the terminating condition and updates the weights of the machines if necessary. These procedures of process planning, simulation, and checking are repeated until the terminating condition is met. The process planning procedure uses branch and bound method, and the Lagrangian relaxation method is used to find the lower bounds.

In the integrated module, the optimal solution of the process planning and scheduling is made. The branch and bound algorithm is used and the branching strategy is concretely related with the problem structure. The experimental results of the proposed system are also included. 
c PhD 

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번호 c year 제목 author
26 PhD  1995  Design Support System for the Conceptual Design of Manufacturing Databases [13] Kitae Shin 
25 PhD  1991  An Integrated Decision Support System for FMS Planning and Control Problems [11] Seongyoung Jang 
24 PhD  1994  A Study on Design of a Cooperative- Distributed Shop Floor Control System for Computer Integrated Manufacturing [19] Namkyu Park 
23 PhD  1996  An Improved Scheduling Heuristic Based on Batch Splitting Method for The Job Shop Scheduling Problem [4] Hanil Jeong 
22 PhD  1996  A Design Support System for the Process Design of Computer Integrated Manufacturing [2] Chankwon Park 
» PhD  1997  A Study on the Integration of Process Planning and Scheduling [3] Kidong Kim 
20 PhD  1997  Computer-Aided Synthesis of the Execution Controllers for Workcells in Computer Integrated Manufacturing Systems [18] Sangkyun Kim 
19 PhD  1997  A Study on FMS Design Justification Considering Part Type Selection and Performance Evaluation Hosub Shin 
18 PhD  1997  A Study on the Integration of Loading and Scheduling in Flexible Manufacturing Systems [21] Sangbok Woo 
17 PhD  1999  A Study on Job Shop Scheduling Problems considering Production Capacity Adjustment [16] Daeyoung Chung 
16 PhD  1999  A Study on the Manufacturing System State Based Scheduler using Neural Network and Simulator [20] Kitae Kim 
15 PhD  2002  Flexible Job Shop Scheduling with Multi-level Job Structures [16] Yangja Jang 
14 PhD  2003  Process Modeling and Performance Analysis Methodology toward Optimal Design of Manufacturing Systems [30] Kichang Lee 
13 PhD  2004  Ontology Development for e-Business Integration [26] Tai-Woo Chang 
12 PhD  2005  A Study on the Integration of Quality Designing and Process Control in Steel Industry [15] Jonghan Kim 
11 PhD  2005  Performance Analysis and Network Design of Supply Chain for Strategic Decision Making [14] Eoksu Sim 
10 PhD  2005  Development of an algorithm for multi-plant production plans in a supply chain [50] Sungwon Jung 
9 PhD  2008  A study on integrated production planning and strategic framework in supply chain [15] Haejoong Kim 
8 PhD  2009  A Study for Business Process Improvement Using Real-time Information of Unbalanced Work [19] Jaehyun Kong 
7 PhD  2010  Framework for Integrative SRM System and Collaboration Scorecard [26] Jongkyoung Park 
6 PhD  2007  A Study on MRP Process Improvement in a Grid Enabled APS [2] file Hyoung-Gon Lee 
5 PhD  2010  Enhancing Flexibility and Responsiveness in Sales Order Management [54] Mokmin Park 
4 PhD  2013  Price of Simplicity under Congestion: On the Revenue and Pricing Schemes in the Telecommunication Industry [58] file Dongmyung Lee 
3 PhD  2013  A study on production scheduling problems considering differential electricity pricing and distributed generations Jun Young Moon 
2 PhD  2014  Multi-level job scheduling in a flexible discrete-part production environment Hong Bum Na 
1 PhD  2014  A study on integrative decision-making system for reconfigurable manufacturing cells Jin Wu Seo