Research

year 1997 
author ChangUk Kim 
Keyword FMS, Scheduling, Priority Functions, Genetic programming, Simulation 
Abstract Most of the past studies on FMS scheduling problems may be classified into two classes, namely off-line scheduling and on-line scheduling approach. The off-line scheduling methods are used mostly for FMS planning purposes and may not be useful for real time control of FMSs, because it generates solutions only after a relatively long period of time. The on-line scheduling methods are used extensively for dynamic real-time control of FMSs although the performance of on-line scheduling algorithms tends to vary dramatically depending on various configurations of FMS. Current study is about finding a better on-line scheduling rules for FMS operations.
In this study, we propose a method to create priority functions that can be used in setting relative priorities among jobs or machines in on-line scheduling. The priotity functions reflect the configuration of FMS and the user-defined objective functions. The priority functions are generated from diverse dispatching rules which may be considered a special priority functions by themselves, and are used to determine the order of processing and transporting parts.
Overall system of our work consists of two modules, the Priority Function Evolution Module (PFEM) and the FMS Simulation Module (FMSSM). The PFEM generates new priority functions using input variables from a terminal set and primitive functions from a function set by genetic programming. And the FMSSM evaluates each priority function by a simulation methodology. Based on these evaluated values, the PFEM creates new priority functions by using crossover, mutation operation and probabilistic selection. These processes are iteratively applied until the termination criteria are satisfied. We considered various configurations and objective functions of FMSs in our study, and we seek a workable solution rather than an optimum or near optimum solution in scheduling FMS operations in real time. To verify the viability of our approach, experimental results of our model on real FMS are included. 
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번호 c year 제목 author
35 MS  1994  A Study on Development of a Knowledge Based Scheduler and Knowledge Acquisition through Simulation [1] Kitae Kim 
34 MS  1990  A Study on Data Allocation Problems for Distributed Database Design [2] Kitae Shin 
33 MS  2011  A Study on Real Time Progress Monitoring Methodology and Effects based on RTLS in Project Shop [27] Kyounghwi Tae 
32 MS  1995  An Object-Oriented Framework for the Implementation of Distributed Shop Floor Control in FMS [2] Kyungsuk Lee 
31 MS  2011  The Development of a Strategic Model of Freight Transportation between Korea and Europe [525] Louis Coulet 
30 MS  2006  A Framework for the ubiquitous MES using RFID and Web services Technology [25] Manchul Han 
29 MS  2004  A Study on Reverse Supply Chain of End of Life Vehicle for the Enhanced Recycle Performance [6] Miyeon Ryu 
28 MS  2004  A Study on Extended Workflow Model Considering Activity Based Costing [27] Moontae Hwang 
27 MS  2001  A Study of Decision Support for the implementation of Cellular Manufacturing Systems. [1] Muynghee Byun 
26 MS  2007  A Study on Utility Value and Fairness of Information Sharing in Supply Chain [18] file Myongran Oh 
25 MS  1995  A study on Real-Time Collection of Shop Floor Data Using Speech Recognition [2] Namjoo Kim 
24 MS  1988  Development of a Classification and Coding System through Fuzzy Sets Approach [1] Namkyu Park 
23 MS  1991  A Study on Performance Evaluation of Production Plan for FMS Using Queueing Network [1] Sangbok Woo 
22 MS  1997  A New Approach to Master Production Scheduling in the MRP environment [1] Sangdo Choi 
21 MS  1993  A Supervisory Control Approach to Rapid Implementation of Low-Level Control Software for FMC [1] Sangkyun Kim 
20 MS  1995  A study on intelligent dispatching strategy in Automated Manufacturing Systems [5] Seongwoo Lee 
19 MS  1999  A Study on the Development of Event-driven MRP Components Considering Capacity Constraints [1] Seunghyun Yoon 
18 MS  1998  A Study on UML representation of CIM-OSA and availability of analysis and design pattern in CIM-OSA [1] Seungoh Han 
17 MS  1995  A Study on knowledge Acquisition for Simulation-based Scheduling Expert System [1] Soohyun Lee 
16 MS  2011  Intelligent service during middle-of-life phase of a product: Illustration of framework and its evaluation model [3] Soyeon Yoon 
15 MS  1992  A Study on Production Planning Problems in a Flexible Machining and Assembly System [1] Sukang Lee 
14 MS  2014  A hybrid algorithm for production scheduling under Make-to-Order environment : a case study from the transformer industry Sung Bum Jun 
13 MS  1993  A Study on the Computer-Aided Process Planning for Rotational Parts Considering Machine Status [1] Sungbum Chun 
12 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 
11 MS  2012  Load Leveling in Project Scheduling Using Partial Adjustment and Diffusional Relaxation Method [12] SungHoon KIM 
10 MS  2012  Load Leveling in Project Scheduling Considering Work-in-Process Inventory [18] Sungjin Lee 
9 MS  2000  Design of a Hybrid System in Integrating Kanban with MRP [2] Taeyoung Song 
8 MS  1996  A Study on the Generation and DB Construction of Modular BOM [1] Yonggu Ji 
7 MS  1990  A Fuzzy Linguistic Approach to the Part Selection Problem in FMS [1] Yoosuk Hong 
6 MS  2002  Design and Implementation of Model Management System for Supply Chain Planning [1] Youngcheol Yang 
5 MS  2009  A Study on Mine Artillery Hit Using Simulation [3] Youngho Chung 
4 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 
3 MS  1992  A Decision Support System for A Machine Specifications in Design of An FMS [6] Youngkwan Ko 
2 MS  2009  A Fuzzy-AHP based Decision making Model for ground operations [37] Youngkyun Lee 
1 MS  2004  A Study on business process model for extended and integrated supply chain planning : Focused on negotiation [5] Yuncheol Kang