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    • 7. 发明授权
    • Signal processing device, signal processing method, program, and recording medium
    • 信号处理装置,信号处理方法,程序和记录介质
    • US07633513B2
    • 2009-12-15
    • US10557112
    • 2004-06-15
    • Tetsujiro KondoMasanori KanemaruTakahiro Nagano
    • Tetsujiro KondoMasanori KanemaruTakahiro Nagano
    • G09G5/00G09G5/02
    • G06T3/4023G06K9/4609G06T5/003G06T2207/20201
    • A signal processing device and signal processing method, and program and recording medium, whereby images and the like closer approximating real world signals can be obtained. An actual world estimating unit estimates the actual world function, assuming that the pixel value of each pixel corresponding to a position in the x direction of image data wherein real world light signals are projected on a plurality of pixels each having the time-space integration effects, and part of the continuity of the real world light signals has been lost is a pixel value acquired by integrating the actual world function corresponding to the real world light signals approximated with a spline function in the x direction. An image generating unit generates an image by integrating the actual world function in the x direction in predetermined increments.
    • 信号处理装置和信号处理方法以及程序和记录介质,从而可以获得近似于真实世界信号的图像等。 实际的世界估计单元估计实际的世界功能,假设每个像素对应于图像数据的x方向上的位置的像素值,其中真实世界的光信号被投影在每个具有时空积分效应的多个像素上 并且已经丢失了真实世界光信号的连续性的一部分是通过将与在x方向上的样条函数近似的真实世界光信号相对应的实际世界函数进行积分而获得的像素值。 图像生成单元以规定的增量在x方向上积分实际世界功能来生成图像。
    • 10. 发明申请
    • Learning Device, Learning Method, and Learning Program
    • 学习设备,学习方法和学习计划
    • US20080075362A1
    • 2008-03-27
    • US11722141
    • 2005-12-21
    • Takahiro NaganoTetsujiro KondoTsutomu WatanabeJunichi IshibashiHisakazu ShirakiNaoki FujiwaraMasanori KanemaruShinichiro KanekoYasuhiro Suto
    • Takahiro NaganoTetsujiro KondoTsutomu WatanabeJunichi IshibashiHisakazu ShirakiNaoki FujiwaraMasanori KanemaruShinichiro KanekoYasuhiro Suto
    • G06K9/62
    • H04N5/21H04N5/142H04N5/144
    • A motion-setting section (61) sets a motion amount and a motion direction for obtaining processing coefficients. A student-image-generating section (62) generates student images obtained by adding a motion blur to a teacher image not only based on the set motion amount and the set motion direction but also by changing at least one of the motion amount and motion direction in a specific ratio and student images obtained by adding no motion blur to the teacher image. A prediction-tap-extracting section (64) extracts, in order to extract a main term that mainly contains component of the target pixel, at least a pixel value of pixel in the student image whose space position roughly agrees with space position of the target pixel in the teacher image. A processing-coefficient-generating section (65) generates processing coefficients for predicting the target pixels in the teacher images from the pixel values of extracted pixels based on a relationship between the pixels thus extracted and the target pixels in the teacher images. The processing coefficients that are suitable for any motion blur removing which is robust against any shift of the motion vector can be generated through learning.
    • 运动设定部(61)设定用于获得处理系数的运动量和运动方向。 学生图像生成部(62)生成不仅基于设定的运动量和设定的运动方向而将运动模糊添加到教师图像而获得的学生图像,而且通过改变运动量和运动方向中的至少一个 以特定比例和学生图像通过添加没有运动模糊获得的教师图像。 预测抽头部(64)为了提取主要包含目标像素的成分的主项,提取学生图像中的空间位置大致与目标的空间位置一致的像素的像素值 像素在老师的形象。 处理系数生成部(65)基于所提取的像素与教师图像中的目标像素之间的关系,从提取的像素的像素值生成用于预测教师图像中的目标像素的处理系数。 可以通过学习来产生适用于对运动矢量的任何移动而鲁棒的任何运动模糊去除的处理系数。