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Precision coordination and motion control of multiple systems via iterative learning control

机译:迭代学习控制多种系统的精确协调和运动控制

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摘要

In today's engineering world, many emerging applications ranging from manufacturing to the autonomous vehicle industry require coordination of multiple systems. Traditional approaches for controlling these systems often neglect the underlying coupling in the application. To stay at the forefront of these fields requires the development of innovative approaches to new challenges. The research in this dissertation focuses on designing novel control strategies for coordinated applications. Electrohydrodynamic jet (E-jet) printing, an example of an emerging micro/nano-manufacturing process with applications in biotechnology and flexible electronics, requires multiple systems to work in a coordinated manner to achieve a desired objective. Repetitive execution of processes such as E-jet can be harnessed to achieve high performance. Iterative learning control (ILC) is an adaptive control technique for improving process performance in systems that execute a task repetitively. This research simultaneously exploits the repetitiveness and inherent coupling of the desired outcome by applying a coordinated ILC approach to processes such as E-jet. The versatility of this approach will be demonstrated through applications ranging from robotics to emerging manufacturing processes.
机译:在当今的工程世界中,从制造业到自动驾驶汽车行业的许多新兴应用都需要多个系统的协调。用于控制这些系统的传统方法通常会忽略应用程序中的基础耦合。要保持在这些领域的最前沿,就需要开发创新方法来应对新挑战。本文的研究重点是为协调应用设计新颖的控制策略。电液流喷射(E-jet)印刷是一种新兴的微/纳米制造工艺的例子,具有生物技术和柔性电子学的应用,它需要多个系统以协调的方式工作以实现所需的目标。可以利用重复执行诸如E-jet的过程来实现高性能。迭代学习控制(ILC)是一种自适应控制技术,用于提高重复执行任务的系统中的过程性能。通过将协调的ILC方法应用于诸如E-jet这样的过程,这项研究同时利用了预期结果的重复性和内在耦合。这种方法的多功能性将通过从机器人技术到新兴制造工艺的应用来证明。

著录项

  • 作者

    Kira Barton; Andrew Alleyne;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
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