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Electronic imaging system improvements via novel hardware architecture and halftoning algorithms.

机译:通过新颖的硬件体系结构和半色调算法改进了电子成像系统。

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摘要

Electronic imaging systems such as image rendering and printing devices are providing higher quality with improved technologies. Physical hardware limitation has been pushed to a newer level. By utilizing some of these new imaging technologies, three improvements are presented in this document, including banding reduction using pulse width modulation, multitoning using DBS screens, and hybrid screen design.; In Ch. 1, we propose a system to reduce electrophotographic laser printer banding artifacts due to optical photoconductor drum velocity fluctuations. The drum velocity fluctuations are sensed with an optical encoder mounted on the drum axis. Based on the line-to-line differential encoder count, we modulate the laser pulse width to compensate fluctuations in development that would otherwise occur. We present an analysis of the system, including the compensation algorithm that determines the desired pulse-width as a function of differential encoder count. Characterization of the system is based on printing, scanning, and processing a special test page that yields information about line-spacing and absorptance fluctuations. This data is synchronized with the encoder count signal that was recorded during the printing of the test page. The experimental results show the efficacy of the system.; In Ch. 2, we propose a methodology for multilevel screen design using Direct Binary Search. We define a multitone schedule, which for each absorptance level specifies the fraction of each native tone used in the multitone cell. Based on the multitone schedule, multitone patterns are designed level-by-level by adding native tones under the stacking constraint. At each level, the spatial arrangement of the native tones is determined by a modified DBS search. We explore several different multitone schedules that illustrate the image quality tradeoffs in multitone screen design.; In Ch. 4, we propose a screen design method that generates a new hybrid class of halftones---stochastic dispersed-dot in highlights and periodic clustered-dot in midtones. The traditional solution for generating hybrid halftones is the so-called supercell technique. While maintaining the spatial resolution, supercell increases the number of the output levels of a periodic micro-clustered-dot screen by adding dots asynchronously based on the order described in a dispersed-dot macroscreen. The traditional supercell screen employs a Bayer macroscreen and consequently results in visible false textures in highlight area. Simply replacing the Bayer macroscreen with a stochastic macroscreen yields the maze-like artifact due to the embedded upsampling process. In this work, we propose a screen design method which optimizes the employed multiple macroscreens and microscreens simultaneously using DBS. The resulting final screen is decomposable for a memory-efficient implementation. We also propose an adaptive microcell-based edge enhancement algorithm for further improvement. Several results are demonstrated using the proposed screens.
机译:诸如图像绘制和打印设备的电子成像系统通过改进的技术提供了更高的质量。物理硬件限制已提高到一个新的水平。通过利用其中一些新的成像技术,本文提出了三项改进,包括使用脉冲宽度调制的带宽减少,使用DBS屏幕的多色调处理以及混合屏幕设计。在Ch。参照图1,我们提出了一种减少由于光导鼓速度波动引起的电子照相激光打印机带状伪影的系统。鼓速度波动由安装在鼓轴上的光学编码器感测。基于线对线差分编码器计数,我们调制激光脉冲宽度以补偿否则会发生的显影波动。我们对系统进行了分析,包括补偿算法,该算法确定所需脉冲宽度作为差分编码器计数的函数。该系统的特性基于打印,扫描和处理特殊的测试页,该测试页会产生有关行距和吸收率波动的信息。该数据与打印测试页期间记录的编码器计数信号同步。实验结果表明了该系统的有效性。在Ch。参照图2,我们提出了使用直接二进制搜索进行多级屏幕设计的方法。我们定义了一个多音时间表,该时间表针对每个吸收率级别指定在多音单元中使用的每个本机音的分数。基于多音时间表,通过在堆叠约束下添加本机音调来逐级设计多音模式。在每个级别上,本机音调的空间排列由修改后的DBS搜索确定。我们探索了几种不同的多色调时间表,这些时间表说明了多色调屏幕设计中的图像质量折衷。在Ch。参照图4,我们提出一种屏幕设计方法,该方法可生成新的半色调混合类-高光中的随机分散点和中色调中的周期性聚类点。用于产生混合半色调的传统解决方案是所谓的超级单元技术。在保持空间分辨率的同时,超级单元通过基于分散点宏屏幕中描述的顺序异步添加点,从而增加了周期性微簇点屏幕的输出级别数。传统的超级单元屏幕采用Bayer宏屏幕,因此会在高光区域产生可见的错误纹理。由于嵌入式的上采样过程,用随机宏屏简单地替换拜耳宏屏会产生类似迷宫的伪像。在这项工作中,我们提出了一种屏幕设计方法,该方法可以使用DBS同时优化使用的多个宏屏幕和微屏幕。最终的最终屏幕可分解,以实现内存高效的实现。我们还提出了一种基于自适应微蜂窝的边缘增强算法,以进行进一步的改进。使用建议的屏幕展示了一些结果。

著录项

  • 作者

    Lin, Guo-Yau.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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