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Operational performance enhancement of human operated flexible systems.

机译:增强人为操作的灵活系统的操作性能。

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摘要

Recent decades have been witness to explosive leaps in manufacturing productivity. Advances in communication technology, computing speed, control theory, and sensing technology have been significant contributors toward the increased productivity and efficiency that industry has exhibited. The continued growth of technological equipment and engineering knowledge challenges engineers to fully utilize these advancements in more sophisticated and useful automation systems.;One such application involves enhancing bridge and gantry crane operation. These systems are used throughout the globe, and are critical aspects of industrial productivity. Consequently, improving the operational effectiveness of cranes can be extremely valuable.;Effective control of cranes can be largely attributed to two distinct, but related aspects crane manipulation: (1) the expertise of operators, which are responsible for issuing commands to the structures, and (2) the dynamic properties of cranes, which influence how the structures respond to issued commands. Accordingly, the operational efficiency of cranes can be influenced by changing both the way that operators issue commands to cranes, and also how the crane responds to issued commands.;This thesis is concerned with dynamic control theory of flexible machines, and human/machine interaction, especially as these areas relate to industrial crane control. In the area of dynamic control, this thesis investigates control strategies that are specifically suited for use on systems that possess common actuator nonlinearities, like saturation, rate limiting, dead-zone, backlash, and finite-state actuation. In the area of human/machine interaction, this thesis investigates the effects of different crane interface devices on the operational efficiency of cranes.
机译:最近几十年见证了制造业生产率的爆炸性飞跃。通信技术,计算速度,控制理论和传感技术的进步为工业所展示的生产率和效率的提高做出了重要贡献。技术设备和工程知识的不断增长使工程师难以在更复杂和有用的自动化系统中充分利用这些进步。其中一种应用涉及增强桥式起重机和龙门起重机的操作。这些系统在全球范围内使用,是工业生产力的关键方面。因此,提高起重机的运行效率是非常有价值的。起重机的有效控制在很大程度上可归因于起重机操纵的两个不同但相关的方面:(1)负责向结构发布命令的操作员的专业知识, (2)起重机的动态特性,这会影响结构对发出的指令的反应。因此,改变操作员向起重机发出命令的方式,以及改变起重机对发出的命令的反应方式,都可以影响起重机的工作效率。本论文涉及柔性机械的动态控制理论以及人机交互作用。 ,尤其是因为这些领域与工业起重机控制有关。在动态控制领域,本文研究了特别适用于具有常见执行器非线性(如饱和度,速率限制,死区,反冲和有限状态执行器)的系统的控制策略。在人机交互方面,本文研究了不同起重机接口设备对起重机运行效率的影响。

著录项

  • 作者

    Sorensen, Khalid Lief.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Industrial.;Engineering Mechanical.;Engineering Robotics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 255 p.
  • 总页数 255
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;机械、仪表工业;
  • 关键词

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