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A distributed time-driven simulation method for enabling real-time manufacturing shop floor control

机译:用于实现实时生产车间控制的分布式时间驱动仿真方法

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摘要

This paper proposes a distributed simulation approach for scheduling discrete-events in manufacturing shop floors. The proposed approach employs a time-driven method to simulate occurrence of discrete-events using distributed entities that replicate physical entities in the manufacturing shop floor. In specific, the proposed approach iteratively controls the timing of discrete-events occurrence using a control theoretic model. In this approach, changing the speed of the simulation clock, termed time-scaling factor, can accelerate or decelerate the simulation speed resulting in simpler synchronizations of discrete-events and faster simulation than standard distributed discrete-event simulations according to the capability of the communication networks. Computational experiments are conducted to test the performance of the proposed system with different values of the time-scaling factor, and the relationship between the system performance and the time-scaling factor is investigated through analysis of the system model. Results obtained from the computational experiments show significant successes in speeding up discrete-event simulations in such a way that the proposed approach can be used for the control of manufacturing shop floors, providing real-time decision supports.
机译:本文提出了一种分布式仿真方法,用于调度制造车间中的离散事件。所提出的方法采用时间驱动方法,使用分布式实体模拟离散事件的发生,这些分布式实体在制造车间中复制物理实体。具体而言,所提出的方法使用控制理论模型来迭代控制离散事件的发生时间。在这种方法中,根据通信的能力,更改模拟时钟的速度(称为时标因子)可以加速或减速模拟速度,从而导致离散事件的同步更简单,并且比标准分布式离散事件仿真的仿真速度更快。网络。进行了计算实验来测试所提出系统在不同时间比例因子下的性能,并通过分析系统模型来研究系统性能与时间比例因子之间的关系。从计算实验中获得的结果表明,在加速离散事件模拟方面取得了重大成功,该提议方法可用于控制生产车间,提供实时决策支持。

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