The objective of this paper is to analyze a pull type multi-product, multi-line and multi-stage flexible manufacturing system whose resources are subject to planned and unplanned breakdown conditions. To ensure a continual supply of the finished products, under breakdown conditions, parts/materials flow through alternate routes exhibiting routing flexibility. The machine resources are flexible in this study and are capable of producing more than one item. Every machining and assembly station has been equipped with automated inspection units to ensure the quality of the products. The system is modelled through coloured Petri net methodology and the impact of input factors have been shown on the performance of the system. The study has been extended to explore near-optimal conditions of the system using design of experiment and response surface methods.
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Tauseef AIZED, Koji TAKAHASHI, Ichiro HAGIWARA, "Coloured Petri Net Based Modelling and Analysis of Multiple Product FMS with Resource Breakdowns and Automated Inspection" in IEICE TRANSACTIONS on Fundamentals,
vol. E90-A, no. 11, pp. 2593-2603, November 2007, doi: 10.1093/ietfec/e90-a.11.2593.
Abstract: The objective of this paper is to analyze a pull type multi-product, multi-line and multi-stage flexible manufacturing system whose resources are subject to planned and unplanned breakdown conditions. To ensure a continual supply of the finished products, under breakdown conditions, parts/materials flow through alternate routes exhibiting routing flexibility. The machine resources are flexible in this study and are capable of producing more than one item. Every machining and assembly station has been equipped with automated inspection units to ensure the quality of the products. The system is modelled through coloured Petri net methodology and the impact of input factors have been shown on the performance of the system. The study has been extended to explore near-optimal conditions of the system using design of experiment and response surface methods.
URL: https://globals.ieice.org/en_transactions/fundamentals/10.1093/ietfec/e90-a.11.2593/_p
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@ARTICLE{e90-a_11_2593,
author={Tauseef AIZED, Koji TAKAHASHI, Ichiro HAGIWARA, },
journal={IEICE TRANSACTIONS on Fundamentals},
title={Coloured Petri Net Based Modelling and Analysis of Multiple Product FMS with Resource Breakdowns and Automated Inspection},
year={2007},
volume={E90-A},
number={11},
pages={2593-2603},
abstract={The objective of this paper is to analyze a pull type multi-product, multi-line and multi-stage flexible manufacturing system whose resources are subject to planned and unplanned breakdown conditions. To ensure a continual supply of the finished products, under breakdown conditions, parts/materials flow through alternate routes exhibiting routing flexibility. The machine resources are flexible in this study and are capable of producing more than one item. Every machining and assembly station has been equipped with automated inspection units to ensure the quality of the products. The system is modelled through coloured Petri net methodology and the impact of input factors have been shown on the performance of the system. The study has been extended to explore near-optimal conditions of the system using design of experiment and response surface methods.},
keywords={},
doi={10.1093/ietfec/e90-a.11.2593},
ISSN={1745-1337},
month={November},}
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TY - JOUR
TI - Coloured Petri Net Based Modelling and Analysis of Multiple Product FMS with Resource Breakdowns and Automated Inspection
T2 - IEICE TRANSACTIONS on Fundamentals
SP - 2593
EP - 2603
AU - Tauseef AIZED
AU - Koji TAKAHASHI
AU - Ichiro HAGIWARA
PY - 2007
DO - 10.1093/ietfec/e90-a.11.2593
JO - IEICE TRANSACTIONS on Fundamentals
SN - 1745-1337
VL - E90-A
IS - 11
JA - IEICE TRANSACTIONS on Fundamentals
Y1 - November 2007
AB - The objective of this paper is to analyze a pull type multi-product, multi-line and multi-stage flexible manufacturing system whose resources are subject to planned and unplanned breakdown conditions. To ensure a continual supply of the finished products, under breakdown conditions, parts/materials flow through alternate routes exhibiting routing flexibility. The machine resources are flexible in this study and are capable of producing more than one item. Every machining and assembly station has been equipped with automated inspection units to ensure the quality of the products. The system is modelled through coloured Petri net methodology and the impact of input factors have been shown on the performance of the system. The study has been extended to explore near-optimal conditions of the system using design of experiment and response surface methods.
ER -