首页> 外文会议>Conference on Color Imaging XIII: Processing, Hardcopy, and Applications; 20080129-30; San Jose,CA(US) >An inverse display color characterization model based on an optimized geometrical structure
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An inverse display color characterization model based on an optimized geometrical structure

机译:基于优化几何结构的逆显示颜色表征模型

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We have defined an inverse model for colorimetric characterization of additive displays. It is based on an optimized three-dimensional tetrahedral structure. In order to minimize the number of measurements, the structure is defined using a forward characterization model. Defining a regular grid in the device-dependent destination color space leads to heterogeneous interpolation errors in the device-independent source color space. The parameters of the function used to define the grid are optimized using a globalized Nelder-Mead simplex downhill algorithm. Several cost functions are tested on several devices. We have performed experiments with a forward model which assumes variation in chromaticities (PLVC), based on one-dimensional interpolations for each primary ramp along X, Y and Z (3×3×1 - D). Results on 4 devices (2 LCD and a DLP projection devices, one LCD monitor) are shown and discussed.
机译:我们为加法显示器的比色特性定义了一个逆模型。它基于优化的三维四面体结构。为了最大程度地减少测量次数,使用正向表征模型定义结构。在与设备有关的目标颜色空间中定义规则的网格会导致在与设备无关的源颜色空间中的异构插值错误。使用全局Nelder-Mead单纯形下坡算法优化了用于定义网格的函数参数。在多种设备上测试了几种成本函数。我们已经对前向模型进行了实验,该模型基于沿X,Y和Z(3×3×1-D)的每个主坡道的一维插值,假定了色度变化(PLVC)。显示并讨论了4种设备(2个LCD和DLP投影设备,一个LCD监视器)上的结果。

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