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      Deadlock Prevention Policy with Behavioral Optimality or Suboptimality Achieved by the Redundancy Identification of Constraints and the Rearrangement of Monitors

      , , , ,
      Discrete Dynamics in Nature and Society
      Hindawi Limited

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          Abstract

          This work develops an iterative deadlock prevention method for a special class of Petri nets that can well model a variety of flexible manufacturing systems. A deadlock detection technique, called mixed integer programming (MIP), is used to find a strict minimal siphon (SMS) in a plant model without a complete enumeration of siphons. The policy consists of two phases. At the first phase, SMSs are obtained by MIP technique iteratively and monitors are added to the complementary sets of the SMSs. For the possible existence of new siphons generated after the first phase, we add monitors with their output arcs first pointed to source transitions at the second phase to avoid new siphons generating and then rearrange the output arcs step by step on condition that liveness is preserved. In addition, an algorithm is proposed to remove the redundant constraints of the MIP problem in this paper. The policy improves the behavioral permissiveness of the resulting net and greatly enhances the structural simplicity of the supervisor. Theoretical analysis and experimental results verify the effectiveness of the proposed method.

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          Most cited references43

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          A Petri net based deadlock prevention policy for flexible manufacturing systems

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            Deadlock avoidance in flexible manufacturing systems with concurrently competing process flows

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              Elementary Siphons of Petri Nets and Their Application to Deadlock Prevention in Flexible Manufacturing Systems

              M. Zhou, Z Li (2004)
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                Author and article information

                Journal
                Discrete Dynamics in Nature and Society
                Discrete Dynamics in Nature and Society
                Hindawi Limited
                1026-0226
                1607-887X
                2015
                2015
                : 2015
                :
                : 1-15
                Article
                10.1155/2015/579623
                8ed384be-dc52-4cc8-b6cb-ddb6e8fd9795
                © 2015

                http://creativecommons.org/licenses/by/4.0/

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