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Energy Saving Operation of Manufacturing System Based on Dynamic Adaptive Fuzzy Reasoning Petri Net

机译:基于动态自适应模糊推理Petri网的制造系统节能运行

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摘要

The energy efficient operation of a manufacturing system is important for sustainable development of industry. Apart from the device and process level, energy saving methods at the system level has attracted increasing attention with the rapid growth of the industrial Internet of things technology, which makes it possible to sense and collect real-time data from the production line and provide more opportunities for online control for energy saving purposes. In this paper, a dynamic adaptive fuzzy reasoning Petri net is proposed to decide the machine energy saving state considering the production information of a discrete stochastic manufacturing system. Fuzzy knowledge for energy saving operations of a machine is represented in weighted fuzzy production rules with certain values. The rules describe uncertain, imprecise, and ambiguous knowledge of machine state decisions. This makes an energy saving sleep decision in advance when a machine has the inclination of starvation or blockage, which is based on the real-time production rates and level of connected buffers. A dynamic adaptive fuzzy reasoning Petri net is formally defined to implement the reasoning process of the machine state decision. A manufacturing system case is used to demonstrate the application of our method and the results indicate its effectiveness for energy saving operation purposes.
机译:制造系统的节能运行对于工业的可持续发展非常重要。除了设备和过程级别之外,随着工业物联网技术的迅猛发展,系统级别的节能方法引起了越来越多的关注,这使得可以从生产线感知和收集实时数据并提供更多在线控制以节省能源的机会。本文提出了一种动态自适应模糊推理Petri网,它基于离散随机制造系统的生产信息来确定机器的节能状态。机器的节能运行的模糊知识以具有一定值的加权模糊生产规则表示。这些规则描述了机器状态决策的不确定,不精确和模棱两可的知识。当机器有饥饿或堵塞的倾向时,这会根据实时生产率和所连接缓冲区的水平提前做出节能睡眠决策。正式定义了动态自适应模糊推理Petri网,以实现机器状态决策的推理过程。以制造系统为例来说明我们方法的应用,结果表明了该方法在节能运行中的有效性。

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