通过Petri网结构分析提高代数死锁避免策略的灵活性

Jonghun Park, S. Reveliotis
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引用次数: 6

摘要

在离散事件系统文献中,顺序资源分配系统中的死锁避免是一个定义良好的问题,因为它是许多当代技术系统运行的基础。在过去,这个问题已经通过一些形式框架来研究,包括有限状态自动机(FSA)和Petri网(PN)。本文证明了一类重要的死锁避免策略(DAP),称为代数PK-DAP,最初是在FSA范式中开发的,可以使用PN结构分析的最新结果进行分析。此外,本文采用的DAP分析和设计方法有效地推广了目前可用的代数PK-DAP,并通过新的更灵活的策略实现对其进行了丰富。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing the flexibility of algebraic deadlock avoidance policies through Petri net structural analysis
Deadlock avoidance in sequential resource allocation systems is a well-defined problem in discrete event system literature, as it underlies the operation of many contemporary technological systems. In the past, the problem has been studied by means of a number of formal frameworks, including the finite state automata (FSA) and Petri nets (PN). In this paper, it is shown that a significant class of deadlock avoidance policies (DAP), known as algebraic PK-DAP, originally developed in the FSA paradigm, can be analyzed using recent results from PN structural analysis. Furthermore, the approach to DAP analysis and design taken in this paper has led to the effective generalization of the currently available algebraic PK-DAP, and to their enrichment with new and more flexible policy implementations.
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