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Design of predictable production scheduling model using control theoretic approach

机译:基于控制理论的可预测生产调度模型设计

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As one of the most important planning and operational issues in manufacturing systems, production scheduling generally deals with allocating a set of resources over time to perform a set of tasks. Recently, control theoretic approaches based on nonlinear dynamics of continuous variables have been proposed to solve production scheduling problems as an alternative to traditional production scheduling methods that deal with decision-making components in discrete nature. The major goal of this paper is to improve predictability and performance of an existing scheduling model that employs the control theoretic approach, called distributed arrival time controller (DATC), to manage arrival times of parts using an integral controller. In this paper, we first review and investigate unique dynamic characteristics of the DATC in regards to convergence and chattering of arrival times. We then propose a new arrival time controller for the DATC that can improve predictability and performance in production scheduling. We call the new mechanism the double integral arrival-time controller (DIAC). We analyse unique characteristics of the DIAC such as oscillatory trajectory of arrival times, their oscillation frequency, and sequence visiting mechanism. In addition, we compare scheduling performance of the DIAC to the existing DATC model through computational experiments. The results show that the proposed system can be used as a mathematical and simulation model for designing adaptable manufacturing systems in the future.
机译:作为制造系统中最重要的计划和运营问题之一,生产计划通常涉及随着时间的推移分配一组资源以执行一组任务。近来,已经提出了基于连续变量的非线性动力学的控制理论方法来解决生产调度问题,以代替传统的生产调度方法来处理离散性质的决策组件。本文的主要目标是提高现有调度模型的可预测性和性能,该调度模型采用称为分散到达时间控制器(DATC)的控制理论方法,使用积分控制器来管理零件的到达时间。在本文中,我们首先回顾和研究DATC在到达时间的收敛和颤动方面的独特动态特性。然后,我们为DATC提出了一种新的到达时间控制器,该控制器可以提高生产计划中的可预测性和性能。我们将新机制称为双积分到达时间控制器(DIAC)。我们分析了DIAC的独特特征,例如到达时间的振荡轨迹,它们的振荡频率和序列访问机制。此外,我们通过计算实验将DIAC的调度性能与现有DATC模型进行了比较。结果表明,该系统可以作为未来设计适应性生产系统的数学模型和仿真模型。

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