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    • 1. 发明授权
    • Processing method and apparatus
    • 加工方法及装置
    • US08295598B2
    • 2012-10-23
    • US12338265
    • 2008-12-18
    • Hirowo InoueHisashi IshikawaAkitoshi Yamada
    • Hirowo InoueHisashi IshikawaAkitoshi Yamada
    • G06K9/34
    • G09G5/393G09G2360/122
    • A processing apparatus processes input pixel data by referring to pixel data of peripheral pixels. The processing apparatus divides an input image in a first direction, inputs pixel data of a divided image divided in the first direction in a second direction crossing the first direction at a right angle, and stores the inputted pixel data. When a pixel to be referred to for processing the stored pixel data is not included in the divided image, the processing apparatus outputs pixel data of the reference pixel based on the stored pixel data, and processes the stored pixel data by referring to the pixel data of the reference pixel.
    • 处理装置通过参照周边像素的像素数据来处理输入像素数据。 处理装置沿第一方向分割输入图像,输入沿与第一方向成直角的第二方向沿第一方向分割的分割图像的像素数据,并存储输入的像素数据。 当处理所存储的像素数据的参考像素不包括在分割图像中时,处理装置基于存储的像素数据输出参考像素的像素数据,并通过参照像素数据处理存储的像素数据 的参考像素。
    • 6. 发明授权
    • Image processing device and image processing method
    • 图像处理装置及图像处理方法
    • US08508797B2
    • 2013-08-13
    • US12917206
    • 2010-11-01
    • Akitoshi YamadaMitsuhiro OnoRie KajiharaTomokazu IshikawaYuji KonnoYutaka KanoHitoshi NishikoriNorihiro Kawatoko
    • Akitoshi YamadaMitsuhiro OnoRie KajiharaTomokazu IshikawaYuji KonnoYutaka KanoHitoshi NishikoriNorihiro Kawatoko
    • H04N1/60
    • B41J2/2132G06K15/107H04N1/40025
    • When recording is performed in a pixel region by M (M is an integer equal to or larger than 2) passes with N (N is an integer equal to or larger than 2) recording element groups, density variation due to a deviation between recording positions of dots that are recorded by different passes is suppressed while a load of data processing is decreased.First, multivalued image data (24-1 to 24-2) corresponding to the M passes is generated from input image data, and the multivalued image data corresponding to the M passes is quantized to generate quantized data (26-1 to 26-2) corresponding to the M passes. Then, the quantized data corresponding to the M passes is divided into quantized data being complements of each other and corresponding to the N recording element groups. Accordingly, the quantized data (28-1 to 28-4) corresponding to the M passes for the N recording element groups is obtained. With this configuration, the density variation due to the deviation between the recording positions by the M passes can be suppressed. Also, since the number of pieces of data subjected to the quantization is small, the load of the quantization can be decreased.
    • 当通过M(M是等于或大于2的整数)在像素区域中进行记录时,通过N(N是等于或大于2的整数)记录元素组,由记录位置之间的偏差引起的浓度变化 在数据处理负荷减小的同时抑制不同通过记录的点。 首先,从输入图像数据生成与M遍对应的多值图像数据(24-1〜24-2),对与M遍对应的多值图像数据进行量化,生成量化数据(26-1〜26-2 )。 然后,对应于M遍的量化数据被划分成彼此互补的量化数据,并对应于N个记录元素组。 因此,获得对应于N个记录元件组的M遍的量化数据(28-1至28-4)。 利用这种配置,可以抑制由记录位置之间由M次通过的偏差引起的浓度变化。 此外,由于经过量化的数据数量少,所以可以减少量化的负担。