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Please use this identifier to cite or link to this item: http://ntour.ntou.edu.tw:8080/ir/handle/987654321/51125

Title: Design, Analysis, and Implementation of a Real-World Manufacturing Cell Controller Based on Petri nets
Authors: Yisheng Huang
Muder Jeng
Shengluen Chung
Contributors: 國立臺灣海洋大學電機工程學系
Date: 2001-01
Issue Date: 2018-11-13T03:36:24Z
Publisher: International Journal of Computer Integrated Manufacturing
Abstract: Abstract: The primary function of a flexible manufacturing
cell controller is to coordinate equipment within a cell to
perform a sequence of manufacturing operations required by
flexible production. In this paper, we present the modelling, analysis and implementation of a real-world cell controller. A
Petri net-based development environment for cell controller design and implementation is described. The intended
advantage of the proposed environment is that, users can
define and/ or change operation flow directly on the modelled
Petri net, without programming efforts, otherwise required for general cell controller implementation. The proposed envir- onment is used to design and implement a real-world flexible manufacturing cell controller at National Taiwan University of
Science and Technology (NTUST). A scenario-based ap- proach is adopted to model the operation flows in the cell, and from the scenario, we construct its Petri net model. To our knowledge, this is the first work that formalizes the conversion
of scenarios to Petri nets. The resultant net is an augmented
marked graph (Chu and Xie, 1997, IEEE Trans. Robotics Automat., 13( 6), 793 – 804), whose liveness and reversibility
are related to empty siphons. For qualitative analysis, after we
reduce the net, we are able to generate all minimal siphons and traps, and show that the cell model is live and reversible.
Relation: 14(3) pp.304-318
URI: http://ntour.ntou.edu.tw:8080/ir/handle/987654321/51125
Appears in Collections:[電機工程學系] 期刊論文

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