Research

year 1998 
author Jungwoon Yoo 
Keyword A study on an efficient real-time deadlock-free control algorithm by using graph-theoretic approach 
Abstract In line with the rapid development of computer and automation technologies, most of today´s manufacturing systems have volved toward automated systems because they have the potential for providing a high level of performance, i.e. high roductivity, reduction of lead time, high adaptability in continuously changing demands. One of the most popular and promising automated systems is the so-called Flexible manufacturing systems(FMSs). FMSs aim to achieve flexibility with respect to physical structure and logical structure. As such FMSs induce interests of many researchers to study better methods for the design, operation, and performance evaluation of FMSs. Among these various research areas in FMS, one area that has often been overlooked is related to a deadlock problem. More recently, the deadlock issues receive considerable attention in the real-time control realm of automated manufacturing system. An FMS deadlock refers to a situation where two or more parts that have finished current processing each wait for the next machine occupied by other part so that further part flow is inhibited. When an FMS enters deadlock, the whole system can cease to operatae in spite of no apparent machine failure. Deadlock makes part of the system inoperable and gradually expands to the whole system and at last may result in permanent blocking state. As a result, the system utilization and the productivity of the system are decreased. Deadlock-free operation, therefore, is a principle requirement of FMS control. Many researchers studied on an deadlock by using various modelling techniques, especially Petri-net. Modelling an FMS is a time-consuming task in itself. To make the matters worse, whenever a small change in a physical layout(structure) and/or a logical structure occurs, it takes too much time to revise the model. The revision of the model causes the whole changes of the existing model. As the market changes into multi-product small-production environment, an FMS has many physical and logical changes. That´s why such In this paper, we apply a simple and easily adaptable deadlock avoidance algorithm to a middle-sized FMS. This algorithm uses a graph-theoretic approach. It is proposed by Kim(1997). Unlike Petri-net based methods which are complex and static, it is easy to modify the existing model as the system configuration is changed. Most papers on an deadlock dealt with a very small system as an object of research( i.e. 2 machines and 1 AVG or Robot ). Therefore, even though they included an AGV into their system, they had only to focus on the part flow deadlock problem without considering it. On the other hand, the FMS, the object of our research, is equipped with # machines and # AGVs and # robots. We take both the AGV deadlock problem and the part flow deadlock problem into considerations. The core of this paper consists of two parts : AGV deadlock avoidance algorithm by using graph-theoretic approach and the integration of part flow deadlock avoidance and AGV deadlock avoidance. ( if possible tool deadlock avoidance ) In particular, the integration of part flow deadlock avoidance and AGV deadlock avoidance is of importance in this paper. Until now, some researches have been focused on the part flow deadlock avoidance and others on the AGV deadlock avoidance. Few papers dealt with both the AGV deadlock and the part flow deadlock. In this paper, we propose the augmented graph-theoretic approach which can resolve two kinds of deadlock at the same method and in one model. We apply this new approach to virtual manufacturing system we design. Throughout this paper, we propose a new deadlock avoidance method which can integrate the part flow deadlock avoidance and the AGV deadlock avoidance. This deadlock avoidance algorithm can be easily modified whenever the structures will be changed. Therefore, it is fit for FMS, because FMS has much opportunity for changing its structure. Moreover, as it is very simple, it is appropriate for real-time control mechanism. 
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번호 c year 제목 author
111 PhD  1995  Design Support System for the Conceptual Design of Manufacturing Databases [13] Kitae Shin 
110 PhD  1991  An Integrated Decision Support System for FMS Planning and Control Problems [11] Seongyoung Jang 
109 PhD  1994  A Study on Design of a Cooperative- Distributed Shop Floor Control System for Computer Integrated Manufacturing [19] Namkyu Park 
108 PhD  1996  An Improved Scheduling Heuristic Based on Batch Splitting Method for The Job Shop Scheduling Problem [4] Hanil Jeong 
107 PhD  1996  A Design Support System for the Process Design of Computer Integrated Manufacturing [2] Chankwon Park 
106 PhD  1997  A Study on the Integration of Process Planning and Scheduling [3] Kidong Kim 
105 PhD  1997  Computer-Aided Synthesis of the Execution Controllers for Workcells in Computer Integrated Manufacturing Systems [18] Sangkyun Kim 
104 PhD  1997  A Study on FMS Design Justification Considering Part Type Selection and Performance Evaluation Hosub Shin 
103 PhD  1997  A Study on the Integration of Loading and Scheduling in Flexible Manufacturing Systems [21] Sangbok Woo 
102 PhD  1999  A Study on Job Shop Scheduling Problems considering Production Capacity Adjustment [16] Daeyoung Chung 
101 PhD  1999  A Study on the Manufacturing System State Based Scheduler using Neural Network and Simulator [20] Kitae Kim 
100 PhD  2002  Flexible Job Shop Scheduling with Multi-level Job Structures [16] Yangja Jang 
99 PhD  2003  Process Modeling and Performance Analysis Methodology toward Optimal Design of Manufacturing Systems [30] Kichang Lee 
98 PhD  2004  Ontology Development for e-Business Integration [26] Tai-Woo Chang 
97 PhD  2005  A Study on the Integration of Quality Designing and Process Control in Steel Industry [15] Jonghan Kim 
96 PhD  2005  Performance Analysis and Network Design of Supply Chain for Strategic Decision Making [14] Eoksu Sim 
95 PhD  2005  Development of an algorithm for multi-plant production plans in a supply chain [50] Sungwon Jung 
94 PhD  2008  A study on integrated production planning and strategic framework in supply chain [15] Haejoong Kim 
93 PhD  2009  A Study for Business Process Improvement Using Real-time Information of Unbalanced Work [19] Jaehyun Kong 
92 PhD  2010  Framework for Integrative SRM System and Collaboration Scorecard [26] Jongkyoung Park 
91 PhD  2007  A Study on MRP Process Improvement in a Grid Enabled APS [2] file Hyoung-Gon Lee 
90 PhD  2010  Enhancing Flexibility and Responsiveness in Sales Order Management [54] Mokmin Park 
89 PhD  2013  Price of Simplicity under Congestion: On the Revenue and Pricing Schemes in the Telecommunication Industry [58] file Dongmyung Lee 
88 PhD  2013  A study on production scheduling problems considering differential electricity pricing and distributed generations Jun Young Moon 
87 PhD  2014  Multi-level job scheduling in a flexible discrete-part production environment Hong Bum Na 
86 PhD  2014  A study on integrative decision-making system for reconfigurable manufacturing cells Jin Wu Seo 
85 MS  1994  A Study on Distributed Shop Floor Control of Flexible Manufacturing Systems [4] Daeyoung Chung 
84 MS  1994  A Study on Development of a Knowledge Based Scheduler and Knowledge Acquisition through Simulation [1] Kitae Kim 
83 MS  1995  A Study on knowledge Acquisition for Simulation-based Scheduling Expert System [1] Soohyun Lee 
82 MS  1995  A study on intelligent dispatching strategy in Automated Manufacturing Systems [5] Seongwoo Lee 
81 MS  1988  A Simulation Study on Operating Rules of FMS Considering Tool Change Byunghoon Yoo 
80 MS  1988  Development of a Classification and Coding System through Fuzzy Sets Approach [1] Namkyu Park 
79 MS  1988  A Study on The Machine-Part Group Formation for FMS Planning and Operation Jaeyoon Kim 
78 MS  1989  A Study on the Computer and Database Location of Distributed Computer Systems in FMS [1] Kilsup Yang 
77 MS  1989  An FMS Planning Algorithm Considering Tool Magazine Capacity and Alternative Routings [6] Chankwon Park 
76 MS  1989  A Mathematical Decision Making Model for Real-Time Scheduling of an FMS Jonghan Kim 
75 MS  1995  An Object-Oriented Framework for the Implementation of Distributed Shop Floor Control in FMS [2] Kyungsuk Lee 
74 MS  1995  A study on Real-Time Collection of Shop Floor Data Using Speech Recognition [2] Namjoo Kim 
73 MS  1995  A Study on the Group Scheduling Problem with Sequence-dependent Set-up Times in a Multi-stage Cellular Manufacturing Systems Jaesoo Shim 
72 MS  1990  A Fuzzy Linguistic Approach to the Part Selection Problem in FMS [1] Yoosuk Hong 
71 MS  1990  A Study on Data Allocation Problems for Distributed Database Design [2] Kitae Shin 
70 MS  1991  A Study on Scheduling Problem of Hierarchically Structured Products in FMS [1] Hanil Jeong 
69 MS  1991  A Study on Performance Evaluation of Production Plan for FMS Using Queueing Network [1] Sangbok Woo 
68 MS  1991  A Study on the Layered Architecture for the Control of FMS Cells Hosub Shin 
67 MS  1991  A Study on Image Processing and CAD - Vision System Interface of Manufactured Parts [1] Kidong Kim 
66 MS  1992  A Study on Production Planning Problems in a Flexible Machining and Assembly System [1] Sukang Lee 
65 MS  1992  Event-Driven On-Line Operational Control of Flexible Manufacturing Systems Jonghun Park 
64 MS  1992  A Decision Support System for A Machine Specifications in Design of An FMS [6] Youngkwan Ko 
63 MS  1993  A Study on the Computer-Aided Process Planning for Rotational Parts Considering Machine Status [1] Sungbum Chun 
62 MS  1993  A Comparative Analysis of Production Control Policies under Production Uncertainty [5] Janghan Lee