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End-to-end color printer calibration by total least squares regression

机译:通过总最小二乘回归进行端到端彩色打印机校准

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Neugebauer (1937) modeling plays an important role in obtaining end-to-end device characterization profiles for halftone color printer calibration. This paper proposes total least square (TLS) regression methods to estimate the parameters of various Neugebauer models. Compared to the traditional least squares (LS) based methods, the TLS approach is physically more appropriate for the printer modeling problem because it accounts for errors in the measured reflectance of both the primaries and the modeled samples. A TLS method based on print measurements from single-colorant step-wedges is first developed. The method is then extended to incorporate multicolorant print measurements using an iterative algorithm. The LS and TLS techniques are compared through tests performed on two color printers, one employing conventional rotated halftone screens and the other using a dot-on-dot halftone screen configuration. Our experiments indicate that the TLS methods yield a consistent and significant improvement over the LS-based techniques for model parameter estimation. The gains from the TLS method are particularly significant when the number of patches for which measured data is available is limited.
机译:Neugebauer(1937)建模在获取用于半色调彩色打印机校准的端到端设备特征描述文件中起着重要作用。本文提出了总最小二乘(TLS)回归方法来估计各种Neugebauer模型的参数。与传统的基于最小二乘法(LS)的方法相比,TLS方法在物理上更适合于打印机建模问题,因为它解决了原色和建模样本的反射率测量误差。首先开发了一种基于单色着色剂楔形物的印刷测量值的TLS方法。然后将该方法扩展为使用迭代算法合并多色打印测量。 LS和TLS技术是通过在两台彩色打印机上进行的测试进行比较的,其中一种使用传统的旋转半色调网屏,另一种使用点对点半色调网屏配置。我们的实验表明,TLS方法比基于LS的模型参数估计技术产生了一致且显着的改进。当可用测量数据的补丁数量受到限制时,TLS方法的收益尤其重要。

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