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Identification of potential deadlock set in semiconductor track systems

机译:识别半导体轨道系统中潜在的死锁

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Addresses an efficient method to identify the process modules that can potentially cause deadlock in semiconductor track systems. Track systems carry out important functions in the photolithography process of semiconductor fabrication. Trends toward high automation and flexibility in the track systems accelerate the necessity of the intelligent controller that can guarantee deadlock-free operation of the track systems. However, there is a limitation when applying a deadlock avoidance policy in real-time due to the computational complexity caused by scores of modules, and complex and flexible process flows. To cope with that problem, the paper proposes an efficient method to identify potential deadlock process modules by introducing the concept of a potential deadlock set. The potential deadlock set is defined as the set of resources or modules that can result in deadlock in near future. Once the potential deadlock set is identified in the track system, a deadlock avoidance policy can be applied only to the process modules included in the potential deadlock set. Therefore, the approach using the potential deadlock set can significantly reduce the computational complexity when applying deadlock avoidance policy. A resource request matrix and a genetic algorithm are used to find the potential deadlock set in the track systems.
机译:解决一种有效的方法来识别可能导致半导体轨道系统死锁的过程模块。跟踪系统在半导体制造的光刻工艺中执行重要的功能。轨道系统的高度自动化和灵活性的趋势加速了智能控制器的需求,该智能控制器可以保证轨道系统的无死锁操作。但是,实时应用死锁避免策略存在局限性,这是由于模块数量众多以及复杂而灵活的流程导致的计算复杂性。为了解决这个问题,本文提出了一种有效的方法,通过引入潜在死锁集的概念来识别潜在死锁过程模块。潜在的死锁集定义为可能在不久的将来导致死锁的资源或模块集。一旦在跟踪系统中识别出潜在的死锁集,就可以将避免死锁的策略仅应用于潜在的死锁集中所包含的过程模块。因此,使用潜在死锁集的方法可以在应用死锁避免策略时显着降低计算复杂性。资源请求矩阵和遗传算法用于查找轨道系统中潜在的死锁集。

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