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    • 1. 发明申请
    • Three-dimensional display device
    • 三维显示设备
    • US20080036759A1
    • 2008-02-14
    • US11819946
    • 2007-06-29
    • Takafumi KoikeMichio OikawaKei UtsugiMasami Yamasaki
    • Takafumi KoikeMichio OikawaKei UtsugiMasami Yamasaki
    • G06T15/00
    • G02B27/22G02B3/0006G02F1/133526
    • Objects of the present invention are to widen a visual field of a three-dimensional image display device, and to improve the image quality of the three-dimensional image display device. A number of pixels 51, 52 are formed on a two-dimensional image display device 1 for providing image data of a three-dimensional image. A lens array 2 constituted of a large number of micro lenses 3 is disposed on the two-dimensional image display device 1. Each of the micro lenses 3 is associated with a plurality of pixels 5, each of which emits the same color. In order to ensure a visual field θ required for the three-dimensional image, a diameter LD of each of the micro lenses 3, the distance DFL between each of the pixels 5 and each of the micro lenses 3 in the two-dimensional image display device, are properly set.
    • 本发明的目的是扩大三维图像显示装置的视野,并且提高三维图像显示装置的图像质量。 在用于提供三维图像的图像数据的二维图像显示装置1上形成多个像素51,52。 由多个微透镜3构成的透镜阵列2设置在二维图像显示装置1上。每个微透镜3与多个像素5相关联,每个像素发出相同的颜色。 为了确保三维图像所需的视场θ,每个微透镜3的直径LD,每个像素5之间的距离DFL和二维图像显示中的每个微透镜3 设备,正确设置。
    • 5. 发明申请
    • TEXTURE IMAGE DISPLAY APPARATUS
    • 纹理图像显示设备
    • US20080316374A1
    • 2008-12-25
    • US12051869
    • 2008-03-20
    • Takafumi KoikeKei UtsugiMichio OikawaMasami Yamasaki
    • Takafumi KoikeKei UtsugiMichio OikawaMasami Yamasaki
    • G02F1/1333G09G3/00
    • H04N13/307G02F1/133526G02F1/133603G09G2360/144H04N13/363H04N13/365
    • The present invention represents an object with high-quality texture. A texture image display apparatus includes: a panel display device (20) having a plurality of pixels (21); a lens array (30) having a plurality of lenses for controlling outgoing directions of light outputted from the pixels (21); a pixel data generation part (14) for generating pixel data for each pixel; and a panel driving circuit 15 for driving the panel display device (20) on the basis of the pixel data. One lens (31) is provided for a plurality of adjacent pixels (21), and directs light outputted from these adjacent pixels (21) in directions different from one another. For each pixel (21), the pixel data generation part (14) generates pixel data of different image brightness levels depending on outgoing direction of light, for the same image point in displayed content.
    • 本发明代表具有高质量纹理的物体。 纹理图像显示装置包括:具有多个像素的面板显示装置(20); 具有用于控制从所述像素(21)输出的光的出射方向的多个透镜的透镜阵列(30)。 用于生成每个像素的像素数据的像素数据生成部分(14); 以及用于基于像素数据驱动面板显示装置(20)的面板驱动电路15。 为多个相邻像素(21)提供一个透镜(31),并且将从这些相邻像素(21)输出的光以不同的方向引导。 对于每个像素(21),像素数据生成部分(14)根据显示内容中的相同图像点,根据光的输出方向生成不同图像亮度级的像素数据。
    • 8. 发明申请
    • IMAGE PROCESSING APPARATUS AND IMAGE PROCESSING METHOD
    • 图像处理装置和图像处理方法
    • US20110038529A1
    • 2011-02-17
    • US12834649
    • 2010-07-12
    • Kei UtsugiTakuma ShibaharaTakafumi Koike
    • Kei UtsugiTakuma ShibaharaTakafumi Koike
    • G06K9/00
    • G06T3/0012
    • Image retargeting is appropriately performed on stereo pair images composed of at least two images such as in three-dimensional displays. A path of connected pixels in first image data is calculated based on pixel gradient energy. Each pixel in second image data corresponding to each pixel in connected pixels in the first image data is calculated as an initial search point, based on the stereo correspondence relationship between the first image data and the second image data. Pixels that minimize energy between pixels of the first image data and pixels of the second image data in the proximity of the initial search point is calculated as a path of connected pixels in the second image data. A path of optimal connected pixels in the first image data is calculated using the energy.
    • 对由三维显示器中的至少两个图像组成的立体对图像适当地执行图像重定向。 基于像素梯度能量计算第一图像数据中的连接像素的路径。 基于第一图像数据和第二图像数据之间的立体对应关系,将与第一图像数据中的连接像素中的每个像素对应的第二图像数据中的每个像素计算为初始搜索点。 将第一图像数据的像素与初始搜索点附近的第二图像数据的像素之间的能量最小化的像素计算为第二图像数据中的连接像素的路径。 使用能量计算第一图像数据中的最佳连接像素的路径。
    • 9. 发明授权
    • Image processing apparatus and image processing method
    • 图像处理装置和图像处理方法
    • US08401278B2
    • 2013-03-19
    • US12834649
    • 2010-07-12
    • Kei UtsugiTakuma ShibaharaTakafumi Koike
    • Kei UtsugiTakuma ShibaharaTakafumi Koike
    • G06K9/00
    • G06T3/0012
    • Image retargeting is appropriately performed on stereo pair images composed of at least two images such as in three-dimensional displays. A path of connected pixels in first image data is calculated based on pixel gradient energy. Each pixel in second image data corresponding to each pixel in connected pixels in the first image data is calculated as an initial search point, based on the stereo correspondence relationship between the first image data and the second image data. Pixels that minimize energy between pixels of the first image data and pixels of the second image data in the proximity of the initial search point is calculated as a path of connected pixels in the second image data. A path of optimal connected pixels in the first image data is calculated using the energy.
    • 对由三维显示器中的至少两个图像组成的立体对图像适当地执行图像重定向。 基于像素梯度能量计算第一图像数据中的连接像素的路径。 基于第一图像数据和第二图像数据之间的立体对应关系,将与第一图像数据中连接的像素中的每个像素对应的第二图像数据中的每个像素计算为初始搜索点。 将第一图像数据的像素与初始搜索点附近的第二图像数据的像素之间的能量最小化的像素计算为第二图像数据中的连接像素的路径。 使用能量计算第一图像数据中的最佳连接像素的路径。