...
首页> 外文期刊>Journal of Imaging Science and Technology >Characterization of error reduction in mobile liquid crystal display using distinct XYZ electro-optical transfer functions for each channel and interchannel components
【24h】

Characterization of error reduction in mobile liquid crystal display using distinct XYZ electro-optical transfer functions for each channel and interchannel components

机译:对每个通道和通道间组件使用不同的XYZ电光传递函数来表征移动液晶显示器中的错误减少

获取原文
获取原文并翻译 | 示例

摘要

Most display characterization methods, such as the gain-offset-gamma model and S-curve model, generally assume that displays have two fundamental characteristics, channel-chromaticity constancy and channel independence. Consequently, based on the assumption of channel-chromaticity constancy, only one electro-optical transfer function (EOTF) is used for each channel to establish the relation between the digital input values and the output luminance levels. Meanwhile, based on the channel-independence assumption, the channel color values are simply summed to acquire mixed color values. However, these assumptions are not so applicable in the case of liquid crystal-based mobile displays. Accordingly, modifications are required to enable the application of conventional display characterization methods to mobile displays. Therefore, this study proposes the modeling of distinct EOTFs in terms of the X, Y, and Z values for each channel to consider the differences among the EOTFs resulting from channel-chromaticity inconstancy. In addition, to overcome the poor additivity property among the channels due to channel interaction, the proposed method also models and uses the EOTFs of the X, Y, and Z values for the interchannel components cyan, magenta, yellow, and gray. Experimental results confirm that the mobile display color values predicted by the proposed characterization method are more accurate than those predicted by other characterization methods due to considering the channel-chromaticity inconstancy and/or channel dependence of the display. (C) 2006 Society for Imaging Science and Technology.
机译:大多数显示器表征方法,例如增益偏移伽玛模型和S曲线模型,通常假定显示器具有两个基本特征,即通道色度恒定性和通道独立性。因此,基于信道色度恒定的假设,每个信道仅使用一个电光传递函数(EOTF)来建立数字输入值和输出亮度级别之间的关系。同时,基于信道独立性假设,简单地将信道颜色值求和以获得混合颜色值。但是,这些假设不适用于基于液晶的移动显示器。因此,需要进行修改以使得能够将常规的显示表征方法应用于移动显示器。因此,本研究建议针对每个通道的X,Y和Z值对不同的EOTF进行建模,以考虑由于通道色度不稳定性而导致的EOTF之间的差异。另外,为了克服由于通道交互而导致的通道之间的差的可加性,所提出的方法还对通道间分量青色,品红色,黄色和灰色的X,Y和Z值的EOTF进行建模和使用。实验结果证实,由于考虑了显示器的通道色度不稳定性和/或通道依赖性,因此,通过提出的表征方法预测的移动显示颜色值比通过其他表征方法预测的移动显示颜色值更准确。 (C)2006年影像科学与技术学会。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号