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research-article

Modeling and deadlock avoidance of automated manufacturing systems with multiple automated guided vehicles

Published: 01 December 2005 Publication History

Abstract

An automated manufacturing system (AMS) contains a number of versatile machines (or workstations), buffers, an automated material handling system (MHS), and is computer-controlled. An effective and flexible alternative for implementing MHS is to use automated guided vehicle (AGV) system. The deadlock issue in AMS is very important in its operation and has extensively been studied. The deadlock problems were separately treated for parts in production and transportation and many techniques were developed for each problem. However, such treatment does not take the advantage of the flexibility offered by multiple AGVs. In general, it is intractable to obtain maximally permissive control policy for either problem. Instead, this paper investigates these two problems in an integrated way. First we model an AGV system and part processing processes by resource-oriented Petri nets, respectively. Then the two models are integrated by using macro transitions. Based on the combined model, a novel control policy for deadlock avoidance is proposed. It is shown to be maximally permissive with computational complexity of O(n2) where n is the number of machines in AMS if the complexity for controlling the part transportation by AGVs is not considered. Thus, the complexity of deadlock avoidance for the whole system is bounded by the complexity in controlling the AGV system. An illustrative example shows its application and power.

Cited By

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  • (2024)Optimal coordination in logistics warehousing with sensing and communication limitsAsian Journal of Control10.1002/asjc.321226:1(419-435)Online publication date: 7-Jan-2024
  • (2024)Multi‐AGV route planning in automated warehouse system based on shortest‐time Q‐learning algorithmAsian Journal of Control10.1002/asjc.307526:2(683-702)Online publication date: 17-Mar-2024
  • (2023)A FCCPN-based Movement Coordination Strategy for Deadlock Avoidance in Multi-AGV SystemsProceedings of the 2023 7th International Conference on Computer Science and Artificial Intelligence10.1145/3638584.3638648(520-525)Online publication date: 8-Dec-2023
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  1. Modeling and deadlock avoidance of automated manufacturing systems with multiple automated guided vehicles

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    Published In

    cover image IEEE Transactions on Systems, Man, and Cybernetics, Part B: Cybernetics
    IEEE Transactions on Systems, Man, and Cybernetics, Part B: Cybernetics  Volume 35, Issue 6
    December 2005
    294 pages

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    IEEE Press

    Publication History

    Published: 01 December 2005

    Author Tags

    1. Automated guided vehicle
    2. Petri nets
    3. automated manufacturing
    4. deadlock avoidance

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    Cited By

    View all
    • (2024)Optimal coordination in logistics warehousing with sensing and communication limitsAsian Journal of Control10.1002/asjc.321226:1(419-435)Online publication date: 7-Jan-2024
    • (2024)Multi‐AGV route planning in automated warehouse system based on shortest‐time Q‐learning algorithmAsian Journal of Control10.1002/asjc.307526:2(683-702)Online publication date: 17-Mar-2024
    • (2023)A FCCPN-based Movement Coordination Strategy for Deadlock Avoidance in Multi-AGV SystemsProceedings of the 2023 7th International Conference on Computer Science and Artificial Intelligence10.1145/3638584.3638648(520-525)Online publication date: 8-Dec-2023
    • (2021)A Least-Energy-Cost AGVs Scheduling for Rasterized Warehouse Environments2021 IEEE International Conference on Systems, Man, and Cybernetics (SMC)10.1109/SMC52423.2021.9658842(2888-2893)Online publication date: 17-Oct-2021
    • (2021)Rasterized Storage Environments Automatically Designing and Planning Based on Monocular Camera2021 IEEE International Conference on Systems, Man, and Cybernetics (SMC)10.1109/SMC52423.2021.9658682(2882-2887)Online publication date: 17-Oct-2021
    • (2021)Resource-Oriented Petri Net-Based Approach to Deadlock Prevention of AMSs2015 IEEE International Conference on Systems, Man, and Cybernetics10.1109/SMC.2015.101(515-520)Online publication date: 10-Mar-2021
    • (2017)Petri net representation and reachability analysis of 01 integer linear programming problemsInformation Sciences: an International Journal10.1016/j.ins.2017.03.014400:C(157-172)Online publication date: 1-Aug-2017
    • (2017)A suboptimal deadlock control policy for designing non-blocking supervisors in flexible manufacturing systemsInformation Sciences: an International Journal10.1016/j.ins.2017.01.021388:C(135-153)Online publication date: 1-May-2017
    • (2016)Think-globally-act-locally approach with weighted arcs to the synthesis of a liveness-enforcing supervisor for generalized Petri nets modeling FMSsInformation Sciences: an International Journal10.1016/j.ins.2015.09.010363:C(235-260)Online publication date: 1-Oct-2016
    • (2016)A survey of siphons in Petri netsInformation Sciences: an International Journal10.1016/j.ins.2015.08.037363:C(198-220)Online publication date: 1-Oct-2016
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