Research

year 2003 
author Kichang Lee 
Keyword manufacturing system design, process model, Petri net, performance model and optimization, simulation 
Abstract In rapidly changing enterprise environments, frequent design activities of a manufacturing system are required. Manufacturing system design decisions have a long term effect on system performance. Moreover, they are so complex problems that coordination and cooperation among departments are necessary to evaluate and improve design alternatives to support the design process, systemic process modeling function and performance analysis/optimization function should be provided in an integrated manner.

In this research, we suggest a new process modeling technique, called PFN(Product Flow Network), as a substitute of previous modeling techniques such as IDEF0, IDEF3, and the ones used in enterprise modeling frameworks. PFN is a directed graph defined for a part to represent the activities and the relationships among them which are necessary to product the part. Connections among nodes can have AND OR XOR types by which various relationships may be captured.

We adopted lead time and manufacturing costs as performance measures. To predict these performance measures for a given design alternatives, Petri net approach is used. We classified a manufacturing system into closed system and open system. In a closed system, the maximum number of parts that may exist in a system is pre-determined. On the other hand, an open system has no such constraints. Petri net models have been constructed for closed and open systems respectively. In addition, an algorithm has been provided to automatically transform a PFM into a Petri net. Before this transformation, XOR elimination algorithm has been suggested, which makes the transformation procedure easy.

In a Petri net for a closed system, as the size of subjective system increases, the computational capability decreased dramatically. To circumvent this shortage, a consolidation approach, which simplifies a Petri net, has been devised. Experimental results are included which show the feasibility of the consolidation. An open system cannot be modeled as a Petri net completely, because the analysis used Markov chain. In this research only service area of a system modeled by Petri net, and arrival area is considered in performance analysis. This approach is new and proved to be effective by simulation experiments. In addition it provides mathematical functions for average lead time and manufacturing costs. Using this functions, we constructed mathematical formulation to minimize average lead time satisfying given manufacturing costs and to minimize total manufacturing costs given average lead time.

In the formulation, lead time function is nonlinear so that the problems cannot be solved directly by commercial optimizer. We adopted linearization procedure in separable programming. By this procedure, nonlinear function can be linearized, which can be solved optimization package such as ILOG CPLEX. We performed simulation experiments for lead time optimization model and manufacturing cost optimization model to validate the formulation. In the result, the mathematical model proved to generate optimized design alternative effectively.

The methodology suggested in this research would make possible to generate various alternatives and to compute optimize performances in the early stage of manufacturing system design process. A computerized environment for this methodology would be more beneficial in supporting the design activities. 
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번호 c year 제목 author
35 MS  2004  A Study on business process model for extended and integrated supply chain planning : Focused on negotiation [5] Yuncheol Kang 
34 MS  2004  A Design on Cost-Estimation Support System for Injection Mold Using AI Method [12] Gunhee Kim 
33 MS  2004  A study on due-date assignment method in wafer fabrication facility producing multiple product types [3] Jaewon Park 
32 MS  2005  A Study on RFID application in Reverse Supply Chain [3] Dongjoon Lim 
31 MS  2005  Development of Reference Model and Strategic Road Map for the Implementation of a Reverse Supply Chain [183] Chihoon Lim 
30 MS  2005  A Study on Developing of Position collecting Vision system Using Marker [1] Jiyoon Park 
29 MS  2005  A Study on Product Development Methodology in Reverse Supply Chain [77] Joon Kim 
28 MS  2006  A Study on the Application of Group Technology for Naval Ship Design And Manufacturing: Relating to Platform Family Architecture [17] Gwangjae Park 
27 MS  2006  A Framework for the ubiquitous MES using RFID and Web services Technology [25] Manchul Han 
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25 MS  2007  A Study on the Valuation of a Supply Chain Considering Management Efficiency and Environmental Effect [53] Jiyoun Kim 
24 MS  2008  An Study abou the Application and Effect of RFID Technology in the Activity Collecting Information to Improvement of Manufacturing Process [10] Sungho Jo 
23 MS  2009  A Fuzzy-AHP based Decision making Model for ground operations [37] Youngkyun Lee 
22 MS  2009  A Study on Integrated Risk Management in Supply Chain - Focusing on High-tech Electronic Industry [52] file Kanghyun Kim 
21 MS  2009  A Study on Mine Artillery Hit Using Simulation [3] Youngho Chung 
20 MS  2009  A Study on the Economic Feasibility of Automated Identification Technology on the ELV Management Process [25] file Kiheon Nam 
19 MS  2007  A Study on Project Risk Management based on Earned Value Management [25] file Hyunil Noh 
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13 MS  2011  A Study on RMC Scheduling using Simulation [19] Jeongho Park 
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10 MS  2011  A System Study to Improve the Infromation Flow of Unused Drug Recovery After Customer Point Reach in Pharmaceutical Reverse Logistics [2] Youngjee Hong 
9 MS  2011  The Development of a Strategic Model of Freight Transportation between Korea and Europe [525] Louis Coulet 
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7 MS  2012  Flight and Maintenance Planning of Miliary Aircraft considering Preventive Maintenance Period [13] Jun-Ho Park 
6 MS  2012  Load Leveling in Project Scheduling Using Partial Adjustment and Diffusional Relaxation Method [12] SungHoon KIM 
5 MS  2012  Load Leveling in Project Scheduling Considering Work-in-Process Inventory [18] Sungjin Lee 
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