Steady state analysis of a timed event graph with time window constraints

Tae-Eog Lee, Seong-Ho Park
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引用次数: 9

Abstract

A negative even graph, introduced by Lee et al. (2002) is a timed event graph that allows negative places and negative tokens for modeling time window constraints between any two transitions. Such time constrained discrete event systems are found in cluster tool scheduling for semiconductor manufacturing or microcircuit design. We examine the steady state behavior of the feasible firing schedules of a negative event graph that satisfy the time window constraints. We develop a recurrent equation for the feasible firing epochs based on the minimax algebra. By extending the steady state results of a conventional timed event graph based on the minimax algebra, we show that there are four classes of steady states that correspond to the earliest and latest feasible steady firing schedules for each of the minimum and maximum cycle times. We characterize how the cycle times and the steady schedules are computed through some matrix algebra and the associated graph algorithms.
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具有时间窗约束的定时事件图的稳态分析
Lee等人(2002)引入的负偶图是一种定时事件图,它允许为任意两个过渡之间的时间窗口约束建模的负位置和负标记。这种时间约束的离散事件系统在半导体制造或微电路设计的集束工具调度中很常见。研究了满足时间窗约束的负事件图可行发射计划的稳态行为。在极大极小代数的基础上,建立了可行发射周期的循环方程。通过推广基于极大极小代数的常规定时事件图的稳态结果,我们得到了四类稳态对应于每一个最小和最大周期时间的最早和最晚可行的稳态发射计划。我们描述了循环时间和稳定调度是如何通过一些矩阵代数和相关的图算法计算的。
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