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    • 81. 发明申请
    • IMAGE PROCESSING APPARATUS, IMAGE PROCESSING METHOD, AND STORAGE MEDIUM IN WHICH PROGRAM IS STORED
    • 图像处理设备,图像处理方法和存储程序的存储介质
    • US20140132834A1
    • 2014-05-15
    • US14116771
    • 2012-05-08
    • Tetsujiro Kondo
    • Tetsujiro Kondo
    • H04N7/01
    • H04N7/0135G06T3/40H04N13/122H04N13/144
    • An image processing apparatus includes a storage unit that is capable of storing a look-up table having association information for associating at least one first image with at least one second image that is an image whose load on a brain has been adjusted, an image accepting unit that accepts at least one image, a mapping unit that acquires a whole or part of one or more second images associated with a whole or part of the at least one image accepted by the image accepting unit, using association information from among the one or more pieces of association information, and an image output unit that outputs at least one output image, which is the whole of the at least one second image acquired by the mapping unit or a group of part of the at least one second image acquired by the mapping unit.
    • 一种图像处理装置,包括:存储单元,其能够存储具有用于将至少一个第一图像与至少一个第二图像相关联的关联信息的查找表,所述至少一个第二图像是已经调整了大脑上的负载的图像,图像接收 接收至少一个图像的单元,映射单元,其利用来自所述图像接收单元接收的所述至少一个图像的全部或一部分与所述图像接收单元接受的一个或多个第二图像相关联的全部或一部分, 更多的关联信息,以及输出至少一个输出图像的图像输出单元,该至少一个输出图像是由映射单元获取的至少一个第二图像的整体或由该图像获取的至少一个第二图像的一部分组 映射单元。
    • 83. 发明授权
    • Data converting apparatus and data converting method, learning device and learning method, and recording medium
    • 数据转换装置和数据转换方法,学习装置和学习方法以及记录介质
    • US08355603B2
    • 2013-01-15
    • US10481722
    • 2003-04-22
    • Tetsujiro Kondo
    • Tetsujiro Kondo
    • G06K9/32G06K9/40G06K9/62H04N7/01H04N11/20H04N5/44G09G5/02
    • H04N7/0135G06T5/003G06T2207/20081H04N7/0125H04N7/0145
    • The present invention relates to a data conversion apparatus and a learning device in which an image can be converted into a higher-quality image. A class-tap generating circuit (2) and a predictive-tap generating circuit (3) respectively generate from an SD image a class tap for classifying a specified pixel of an HD image and a predictive tap for determining the specified pixel. A classification circuit (4) classifies the specified pixel based on the class tap. A coefficient RAM (5) obtains a tap coefficient for the class of the specified pixel from tap coefficients obtained by using supervisor pixels and learner pixels and by learning the relationship between the supervisor pixels and the learner pixels for each of at least one class while applying weighting to the supervisor pixels and the learner pixels based on the activity of the predictive tap generated from the learner pixels. A predictive-computation circuit (6) determines the specified pixel by using the tap coefficient and the predictive tap.
    • 数据转换装置和学习装置技术领域本发明涉及一种数据转换装置和学习装置,其中可以将图像转换成更高质量的图像。 分类抽头产生电路(2)和预测抽头产生电路(3)分别从SD图像生成用于分类HD图像的指定像素的类别抽头和用于确定指定像素的预测抽头。 分类电路(4)根据类别抽头对指定的像素进行分类。 系数RAM(5)通过使用管理者像素和学习者像素获得的抽头系数获得指定像素的类别的抽头系数,并且通过在应用程序中学习至少一个类中的每一个类别的管理员像素与学习者像素之间的关系 基于从学习者像素生成的预测抽头的活动,对主管像素和学习者像素进行加权。 预测计算电路(6)通过使用抽头系数和预测抽头来确定指定的像素。
    • 84. 发明授权
    • Signal processing apparatus
    • 信号处理装置
    • US08335408B2
    • 2012-12-18
    • US12681782
    • 2008-10-07
    • Toshiyuki SekiyaKen HayakawaKazuo HaraokaMasaaki HattoriNaoki KanekoTetsujiro Kondo
    • Toshiyuki SekiyaKen HayakawaKazuo HaraokaMasaaki HattoriNaoki KanekoTetsujiro Kondo
    • G02B6/28
    • G02B6/43H04B10/801
    • In the sending and receiving of a signal through an optical waveguide, an unknown substrate connected to the optical waveguide can be recognized. A signal processing apparatus 1A is provided with an optical waveguide 2A in which the light input from an arbitrary position on an outer circumference is output in an entire circumference direction at a level in accordance with a positional relation with the input location, a master substrate 3M arranged on the outer circumference of the optical waveguide 2A, a single or a plurality of slave substrates 3S arranged at any of a plurality of mount locations at different positions along the outer circumference of the optical waveguide 2A, in which as the light is output from A laser diodes 30S of all the slave substrates 3S connected to the optical waveguide 2A, from a level of a light transmitted through the optical waveguide 2A and input to the photo detector 31M of the master substrate 3M in accordance with the arrangement of the slave substrate 3S, the master substrate 3M recognizes the mount positions and number of the slave substrates 3S.
    • 在通过光波导发送和接收信号时,可以识别连接到光波导的未知基板。 信号处理装置1A设置有光波导2A,其中从外周上的任意位置输入的光在整个圆周方向上以与输入位置的位置关系一级输出,母板3M 布置在光波导2A的外周上的单个或多个从基板3S,其沿着光波导2A的外周在不同位置处设置在多个安装位置中的任一个处,其中当光从光波导2A输出时, 根据从基板的布置,从通过光波导2A透射的光的水平和与主基板3M的光电检测器31M输入的所有从基板3S的激光二极管30S连接到光波导2A, 如图3S所示,主基板3M识别从基板3S的安装位置和数量。
    • 89. 发明授权
    • Image-capturing apparatus, image-capturing method, display apparatus, and display method
    • 图像捕获装置,图像捕获方法,显示装置和显示方法
    • US08248512B2
    • 2012-08-21
    • US12483371
    • 2009-06-12
    • Tetsujiro KondoKenji Tanaka
    • Tetsujiro KondoKenji Tanaka
    • H04N5/225H04N13/04G02B27/22
    • G02B27/2214G02B27/2235H04N13/189H04N13/194H04N13/225H04N13/229H04N13/232H04N13/243H04N13/305H04N13/307H04N13/31H04N13/363
    • The present invention provides full-parallax images having high spatial resolution in real time. An image-capturing optical unit (21) includes a plurality of prismatic mirrors (41) which rotate at a predetermined period. The side surface of each of the prismatic mirrors (41) reflects a light beam from an object. A camera receives the light beam from the object reflected by the prismatic mirrors (41) in order to capture an image of the object. On the other hand, a display optical unit (32) includes a plurality of prismatic mirrors (51) which rotate in phase with the prismatic mirrors (41) at the same period. A projector emits a light beam corresponding to the image of the object captured by the camera, and such a light beam is reflected by the prismatic mirrors (51). A user may view an image corresponding to the light beam reflected by the prismatic mirrors (51). The present invention, for example, can be applied to an image-capturing apparatus for capturing an image, and a display apparatus for displaying the image captured by the image-capturing apparatus.
    • 本发明实时提供具有高空间分辨率的全视差图像。 图像捕获光学单元(21)包括以预定周期旋转的多个棱镜(41)。 每个棱镜反射镜(41)的侧表面反射来自物体的光束。 照相机接收来自棱柱镜(41)反射的物体的光束,以便拍摄物体的图像。 另一方面,显示光学单元(32)包括在相同周期与棱镜镜(41)同相旋转的多个棱镜镜(51)。 投影仪发射对应于由照相机拍摄的物体的图像的光束,并且这样的光束被棱镜镜(51)反射。 用户可以观看与由棱镜镜(51)反射的光束相对应的图像。 例如,本发明可以应用于用于捕获图像的图像捕获装置和用于显示由图像捕获装置捕获的图像的显示装置。