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Passive auto-focus for digital still cameras and camera phones: Filter-switching and low-light techniques.

机译:数码相机和照相手机的被动自动对焦:滤镜切换和弱光技术。

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摘要

In order to gain valuable market share in the growing consumer digital still camera and camera phone market, camera manufacturers have to continually add and improve existing features to their latest product offerings. Auto-focus (AF) is one such feature, whose aim is to enable consumers to quickly take sharply focused pictures with little or no manual intervention in adjusting the camera's focus lens. While AF has been a standard feature in digital still and cell-phone cameras, consumers often complain about their cameras' slow AF performance, which may lead to missed photographic opportunities, rendering valuable moments and events with undesired out-of-focus pictures. This dissertation addresses this critical issue to advance the state-of-the-art in the digital band-pass filter, passive AF method. This method is widely used to realize AF in the camera industry, where a focus actuator is adjusted via a search algorithm to locate the in-focus position by maximizing a sharpness measure extracted from a particular frequency band of the incoming image of the scene. There are no known systematic methods for automatically deriving the parameters such as the digital pass-bands or the search step-size increments used in existing passive AF schemes. Conventional methods require time consuming experimentation and tuning in order to arrive at a set of parameters which balance AF performance in terms of speed and accuracy ultimately causing a delay in product time-to-market. This dissertation presents a new framework for determining an optimal set of passive AF parameters, named Filter-Switching AF, providing an automatic approach to achieve superior AF performance, both in good and low lighting conditions based on the following performance measures (metrics): speed (total number of iterations), accuracy (offset from truth), power consumption (total distance moved), and user experience (in-focus position overrun). Performance results using three different prototype cameras are presented to further illustrate the real-world AF performance gains achieved by the developed approach. The major contribution of this dissertation is that the developed auto focusing approach can be successfully used by camera manufacturers in the development of the AF feature in future generations of digital still cameras and camera phones.
机译:为了在不断增长的消费类数码相机和照相手机市场中获得有价值的市场份额,照相机制造商必须不断为其最新产品系列增加和改进现有功能。自动对焦(AF)是这样的功能之一,其目的是使消费者能够以很少的或不需要人工干预即可快速对焦的照片,以调节相机的对焦镜头。尽管自动对焦已成为数码相机和手机相机的标准功能,但消费者经常抱怨其相机的自动对焦性能低下,这可能会导致错过拍摄机会,并用不合需要的失焦图像渲染出有价值的时刻和事件。本文旨在解决这一关键问题,以提高数字带通滤波器,无源自动对焦方法的最新水平。该方法被广泛用于实现相机行业中的自动对焦,其中通过搜索算法调整焦点致动器,以通过最大化从场景传入图像的特定频带中提取的清晰度度量来定位焦点对准位置。没有已知的系统方法可以自动推导现有无源AF方案中使用的参数(例如数字通带或搜索步长增量)。传统方法需要耗时的实验和调整,才能获得一组参数,这些参数在速度和准确性方面平衡AF性能,最终导致产品上市时间的延迟。本文提出了一种新的框架,用于确定最优的被动式AF参数集,称为“滤光切换AF”,它基于以下性能指标(指标),提供了一种在高光和低光照条件下均能实现优异AF性能的自动方法。 (迭代的总次数),准确性(与真实情况的偏差),功耗(移动的总距离)和用户体验(焦点对准的位置超限)。提出了使用三种不同原型相机的性能结果,以进一步说明通过开发的方法实现的真实AF性能提升。本论文的主要贡献在于,开发的自动对焦方法可以被相机制造商成功地用于下一代数码相机和照相手机的自动对焦功能的开发中。

著录项

  • 作者

    Gamadia, Mark Noel.;

  • 作者单位

    The University of Texas at Dallas.;

  • 授予单位 The University of Texas at Dallas.;
  • 学科 Applied mathematics.;Statistics.;Optics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 康复医学;
  • 关键词

  • 入库时间 2022-08-17 11:37:52

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