Integrated production, material handling scheduling in flexible manufacturing system

Flexible manufacturing system is a dynamic and systematic process that converts raw materials or small components into finished products according to the customers’ various requirements. In this dissertation, a novel simulation-based system for real-time FMS control is presented. The framework is ba...

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Main Author: Ji, Zhenlin
Other Authors: Su Rong
Format: Thesis-Master by Coursework
Language:English
Published: Nanyang Technological University 2022
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Online Access:https://hdl.handle.net/10356/163087
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1630872023-07-04T17:52:20Z Integrated production, material handling scheduling in flexible manufacturing system Ji, Zhenlin Su Rong School of Electrical and Electronic Engineering RSu@ntu.edu.sg Engineering::Electrical and electronic engineering Flexible manufacturing system is a dynamic and systematic process that converts raw materials or small components into finished products according to the customers’ various requirements. In this dissertation, a novel simulation-based system for real-time FMS control is presented. The framework is based on combining the real application systems and the simulation controlled by a DES (Discrete Event System) step execution tool. Simulation is an important part of system analysis which can be used to verify the correctness of the optimized controller. For the simulation part, we use Visual Components 3D simulation software to design a 3D simulation model of a mini production line. For the control part, the Automata Debugger tool is employed to send control commands. There is also a communication hub to transmit sensor data among the controller, simulation, and the real manufacturing system via OPC-UA protocol and TCP/IP protocol, and all the communication is carried out in a parallel way. The novelty of this dissertation is that once the signal of the hardware interface is set up, the production strategy can be changed easily and applied quickly without adjusting the components in the model, and the result of the simulation has proven its effectiveness. The potential benefits of this research are quite significant in the practical application that it can be connected to the real cyber-physical system, where efficient simulation and control techniques will have a direct impact on productivity and profitability. Master of Science (Power Engineering) 2022-11-21T05:02:37Z 2022-11-21T05:02:37Z 2022 Thesis-Master by Coursework Ji, Z. (2022). Integrated production, material handling scheduling in flexible manufacturing system. Master's thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/163087 https://hdl.handle.net/10356/163087 en ISM-DISS-02953 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering
spellingShingle Engineering::Electrical and electronic engineering
Ji, Zhenlin
Integrated production, material handling scheduling in flexible manufacturing system
description Flexible manufacturing system is a dynamic and systematic process that converts raw materials or small components into finished products according to the customers’ various requirements. In this dissertation, a novel simulation-based system for real-time FMS control is presented. The framework is based on combining the real application systems and the simulation controlled by a DES (Discrete Event System) step execution tool. Simulation is an important part of system analysis which can be used to verify the correctness of the optimized controller. For the simulation part, we use Visual Components 3D simulation software to design a 3D simulation model of a mini production line. For the control part, the Automata Debugger tool is employed to send control commands. There is also a communication hub to transmit sensor data among the controller, simulation, and the real manufacturing system via OPC-UA protocol and TCP/IP protocol, and all the communication is carried out in a parallel way. The novelty of this dissertation is that once the signal of the hardware interface is set up, the production strategy can be changed easily and applied quickly without adjusting the components in the model, and the result of the simulation has proven its effectiveness. The potential benefits of this research are quite significant in the practical application that it can be connected to the real cyber-physical system, where efficient simulation and control techniques will have a direct impact on productivity and profitability.
author2 Su Rong
author_facet Su Rong
Ji, Zhenlin
format Thesis-Master by Coursework
author Ji, Zhenlin
author_sort Ji, Zhenlin
title Integrated production, material handling scheduling in flexible manufacturing system
title_short Integrated production, material handling scheduling in flexible manufacturing system
title_full Integrated production, material handling scheduling in flexible manufacturing system
title_fullStr Integrated production, material handling scheduling in flexible manufacturing system
title_full_unstemmed Integrated production, material handling scheduling in flexible manufacturing system
title_sort integrated production, material handling scheduling in flexible manufacturing system
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/163087
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