首页> 外文会议>Image Processing, 1994. Proceedings. ICIP-94., IEEE International Conference >Adaptive color controller for image scanning and printing devices
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Adaptive color controller for image scanning and printing devices

机译:用于图像扫描和打印设备的自适应色彩控制器

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A new adaptive color controller for image scanning and printing processes is proposed. The objective of controlling colors is to achieve the desired accuracy of color reproduction under various viewing and graphic-arts conditions. Based on the plant inverse approach, the adaptive color controller is devised to eliminate color errors for image reproduction. And, it involves a novel feature-extraction method and a model-free estimator. In this approach, the feature-extraction method characterizes the extreme nonlinearity of any combination of color scanning and printing devices in terms of the human vision characteristics. For the consideration of easy implementation and fast image-processing speed, the higher-order CMAC neural network, which was proposed by Lane in 1991, is employed to work for the model-free approximation. In this paper, the colorimetric simulation illustrates the satisfactory performance. Finally, its effectiveness is also demonstrated by several colorimetric experiments.
机译:提出了一种用于图像扫描和打印过程的新型自适应色彩控制器。控制颜色的目的是在各种查看和图形艺术条件下达到所需的颜色再现精度。基于植物逆方法,设计了自适应色彩控制器以消除图像再现的色彩误差。并且,它涉及一种新颖的特征提取方法和一种无模型估计器。在这种方法中,特征提取方法根据人的视觉特性表征了彩色扫描和打印设备的任何组合的极端非线性。考虑到易于实现和快速的图像处理速度,Lane于1991年提出的高阶CMAC神经网络用于无模型逼近。在本文中,比色模拟说明了令人满意的性能。最后,它的有效性也通过数个比色实验得到证明。

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