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Holonic -based control system for automated material handling systems.

机译:基于Holonic的控制系统,用于自动化物料搬运系统。

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摘要

In real-word manufacturing environments, finding the right job sequences and their associated schedules when resource, precedence, and timing constraints are imposed is a difficult task. For most practical problems classical scheduling easily leads to an exponential growth in the number of possible schedules. Moreover, a decision time period of hours or even minutes is too long. Good solutions are often needed in real-time. The problem becomes even more complicated if changes, such as new orders or resource breakdowns, occur within the manufacturing system. One approach to overcome the challenges of solving classical scheduling problems is the use of distributed schemes such as agent or holonic-based control architectures.;This dissertation presents an innovative control architecture that uses the holonic concept, capable of delivering good solutions when applied in dynamic environments. The general holonic control framework presented in this research has specific characteristics not found in others reported so far. Using a modular approach it takes into account all the categories of hardware and software resources of a manufacturing system. Due to its modularity, the holonic control framework can be used for assigning and scheduling different task types, separately or simultaneously. Thus, it can be used not only for assigning and scheduling transport tasks, but also for finding feasible solutions to the job assignment and scheduling of processing tasks, or to better utilize the auxiliary equipment and devices in a manufacturing system.;In the holonic system, under real-time constraints, a feasible schedule for the material handling resources emerges from the combination of individual holons' schedules. Internal evaluation algorithms and coordination mechanisms between the entities in the architecture form the basis for the resultant schedules. The experimental results obtained show a percentage difference between the makespan values obtained using the holonic scheduling approach and the optimal values of under seven percent. Since current control systems in use in industry lack the ability to adapt to dynamic manufacturing environments, the holonic architecture designed and the tests performed in this research could be a part in the effort to build the foundations for the control systems of the next generation manufacturing systems.
机译:在实词制造环境中,当施加资源,优先级和时间限制时,找到正确的作业序列及其关联的时间表是一项艰巨的任务。对于大多数实际问题,经典调度很容易导致可能的调度数量成指数增长。此外,数小时甚至数分钟的决策时间太长。实时常常需要好的解决方案。如果在制造系统中发生更改(例如新订单或资源故障),问题将变得更加复杂。克服经典调度问题的一种方法是采用分布式方案,例如基于代理或基于Holonic的控制体系结构。本文提出了一种创新的控制体系结构,该体系结构采用holonic概念,在动态应用中能够提供良好的解决方案环境。这项研究中提出的一般的整体控制框架具有迄今为止尚未报道的其他特征。使用模块化方法时,它考虑了制造系统的所有类别的硬件和软件资源。由于其模块化,整体控制框架可用于分别或同时分配和调度不同的任务类型。因此,它不仅可以用于分配和安排运输任务,还可以用于为工作分配和处理任务的安排找到可行的解决方案,或者在制造系统中更好地利用辅助设备和设备。 ,在实时约束下,物料处理资源的可行时间表是通过各个Holons时间表的组合得出的。体系结构中实体之间的内部评估算法和协调机制构成了最终进度表的基础。获得的实验结果表明,使用全息调度方法获得的制造期值与低于7%的最佳值之间存在百分比差异。由于当前在工业中使用的控制系统缺乏适应动态制造环境的能力,因此本研究中设计的整体架构和执行的测试可能是为下一代制造系统的控制系统奠定基础的努力的一部分。

著录项

  • 作者

    Babiceanu, Radu F.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Industrial engineering.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 275 p.
  • 总页数 275
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:48

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