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Weighted Characteristic P-vector and Deadlock Control of WS~3PR

机译:WS〜3PR的加权特征P向量和死锁控制

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摘要

Current deadlock control approaches for S~3PGR~2(systems of simple sequential processes with general resources requirement) suffer from incorrect or restricted liveness characterization based on the concept of deadly marked siphons (DMS) and max-con-trolled siphons. Dead transitions may exist when there are no DMS and the net model is in livelock states. A new liveness condition is developed based on the so-called max~*-controlled siphons to replace that of the restrictive max-controlled siphons. A deadlock control policy is further proposed for WS~3PR (weighted S~3PR (systems of simple sequential processes with resources)) by adding control nodes and arcs for elementary siphons only, reducing significantly the number of monitors compared with existing methods. A counter example is shown to indicate that Li's characteristic P-vector must be weighted. The controlled model for WS~3PR is proposed and its liveness property is proved.
机译:基于致命标记虹吸管(DMS)和最大控制虹吸管的概念,当前的S〜3PGR〜2(简单的顺序过程系统,通常需要资源)的死锁控制方法存在着错误或受限的活度特征。当没有DMS并且网络模型处于实时锁定状态时,可能会存在死过渡。在所谓的最大控制虹吸管的基础上,开发了一种新的生活条件,以取代限制性最大控制虹吸管的生活条件。通过仅为基本虹吸管添加控制节点和弧,进一步为WS〜3PR(加权S〜3PR(具有资源的简单顺序过程系统)的系统)提出了死锁控制策略,与现有方法相比,显着减少了监视器的数量。一个反例表明,必须对Li的特征P向量进行加权。提出了WS〜3PR的控制模型,并证明了其活泼性。

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