标题: | 软性显示器光学量测平台之设计与控制 Platform Design and Control of Flexible Display for Optical Measurement |
作者: | 黄培章 Huang, Pei-Jhang 呂宗熙 Liu, Tzong-Shi 机械工程学系 |
关键字: | 软性显示器;模糊控制;影像处理;flexible display;fuzzy control;image processing |
公开日期: | 2009 |
摘要: | 近年來,显示器迅速的发展,从过去阴极射线管(CRT),经过液 晶显示器(LCD)的时代,到现在逐渐朝向超薄化的世代迈进。如今, 像纸张一样轻薄的显示器已经问世,为人類的生活带來很大的冲击。 显示器具有如纸张般厚度且可挠曲的特性,也因此带來不少的便利。 本研究针对这种可挠曲的特性进行光学方面的检测,利用开发的挠曲 平台,使基板产生不同的挠曲半径,对试片作量测。在量测过程中, 使用CCD 相机撷取软性显示挠曲时的弧型輪廓,再对撷取的影像作 前置处理,将影像去除杂讯,接着以模糊强化增强影像对比等方式, 保留所需要的影像,做轨迹的拟合,再使用可以做三种直线运动,及 兩种旋转运动的五轴移动平台,沿着曲线的方向,扫描检测基板光学 性质的变化,以单调光源之照度检测为主。在五轴移动平台中所使用 的控制方法为模糊控制,在此控制方法中加入了基因演算法,以便调 整模糊控制器的比例常數,这些常數包含了误差、误差变化量、模糊 控制器输出之常數;此演算法不断的藉由计算适应性函數數值的高低 判断參數的优劣,决定这些參數的选择与淘汰,以此缩短移动平台的 上升时间、安定时间,并能有效的降低平台超越量与低射现象的问 题。将上升时间后之响应转换到频谱观察,其平台的振动量,比加入 控制器前降低了不少。在软电基板的照度实验中,观察到软电基板中 心部位,在受到弯矩作用下,挠曲的半径越大时,所呈现的照度值会 越高。 In recent years, the display has been developed quickly from the traditional cathode ray tube to the liquid crystal display. Nowadays the liquid crystal display is approaching the generation of flexible display. Therefore, the display as thin as papers will be presented to the public with great impact on our life. This display having the property of flexibility makes people’s life more convenient. Hence, this research concentrates on controlling a platform so as to bend the flexible display with different curvature radii to measure mechanical and optical properties during bending of the flexible display. We carry out image preprocessing in the image-processing technique to filter the noise, and to enhance the image contrast using fuzzy techniques and other methods. We scan and detect optical variation along a curve direction to measure the illuminance of monochromatic light. For ease of measurement, the platform can undergo five-axis motion, namely three translations and two rotations. The platform motor is controlled by using a fuzzy controller, associated with a genetic algorithm. The genetic algorithm adjusts parameters of error constant, error change constant, and output constant.The genetic algorithm keeps selecting better parameters based on fitness functions. The platform obtains good performance such as rise time, and settling time. It is effective in decreasing overshoot and undershoot of platform. This study transformed the platform time response platform after the rising time to frequency spectrums. They show that the vibration of platform has been reduced compared with no controller. In the illuminance experiment, we observed the center of the flexible display has higher illuminance with larger curvature radii in bending. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079714604 http://hdl.handle.net/11536/44759 |
显示于类别: | Thesis |