Yeoh Ivan L, Reinhall Per G, Berg Martin C, Chizeck Howard J, Seibel Eric J
Department of Mechanical Engineering, University of Washington, Seattle, WA 98195 e-mail:
Department of Mechanical Engineering, University of Washington, Seattle, WA 98195.
J Dyn Syst Meas Control. 2017 Sep;139(9):0910111-9101112. doi: 10.1115/1.4036231. Epub 2017 Jun 5.
A run-to-run optimization controller uses a reduced set of measurement parameters, in comparison to more general feedback controllers, to converge to the best control point for a repetitive process. A new run-to-run optimization controller is presented for the scanning fiber device used for image acquisition and display. This controller utilizes very sparse measurements to estimate a system energy measure and updates the input parameterizations iteratively within a feedforward with exact-inversion framework. Analysis, simulation, and experimental investigations on the scanning fiber device demonstrate improved scan accuracy over previous methods and automatic controller adaptation to changing operating temperature. A specific application example and quantitative error analyses are provided of a scanning fiber endoscope that maintains high image quality continuously across a 20 °C temperature rise without interruption of the 56 Hz video.
与更通用的反馈控制器相比,逐次运行优化控制器使用一组精简的测量参数,以收敛到重复过程的最佳控制点。本文提出了一种用于图像采集和显示的扫描光纤设备的新型逐次运行优化控制器。该控制器利用非常稀疏的测量来估计系统能量度量,并在前馈精确反演框架内迭代更新输入参数化。对扫描光纤设备的分析、仿真和实验研究表明,与以前的方法相比,扫描精度有所提高,并且自动控制器能够适应不断变化的工作温度。文中提供了一个具体的应用示例以及对扫描光纤内窥镜的定量误差分析,该内窥镜在温度上升20°C的情况下能持续保持高图像质量,且不中断56Hz的视频。