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    • 61. 发明授权
    • Image processing device and method, storage medium, and program
    • 图像处理装置和方法,存储介质和程序
    • US08253763B2
    • 2012-08-28
    • US11629316
    • 2005-06-06
    • Koji Aoyama
    • Koji Aoyama
    • G09G5/02G06K9/32
    • G06T3/4007G06T3/4023G06T11/203
    • The present invention relates to an image processing device and method, a storage medium, and a program for performing high-quality enlargement processing. Of input image data, a data buffer 32 holds data of target-pixel neighborhood data necessary for the enlargement processing. A data-position swapping unit 33 swaps the data positions of the target-pixel neighborhood data, as needed. A pixel priority determining unit 34 determines background color or foreground color with respect to each pixel of the target-pixel neighborhood data whose data positions were sapped. A data-selection-flag determining unit 36 determines a data selection flag of the target-pixel neighborhood data, the data selection flag being supplied from the pixel priority determining unit 34. Based on the data selection flag supplied from the data-selection-flag determining unit 36, a data selector 37 selects image data to be fit into the position of the target pixel from the target-pixel neighborhood data supplied from the data-position swapping unit 33. The present invention is applicable to OSD devices.
    • 本发明涉及图像处理装置和方法,存储介质和用于执行高质量放大处理的程序。 在输入图像数据中,数据缓冲器32保存放大处理所需的目标像素邻域数据的数据。 数据位置交换单元33根据需要交换目标像素邻域数据的数据位置。 像素优先级确定单元34相对于其数据位置被挖掘的目标像素邻域数据的每个像素确定背景颜色或前景色。 数据选择标志确定单元36确定目标像素邻域数据的数据选择标志,数据选择标志从像素优先级确定单元34提供。根据从数据选择标志提供的数据选择标志 数据选择器37从数据位置交换单元33提供的目标像素邻域数据中选择拟合到目标像素的位置的图像数据。本发明可应用于OSD设备。
    • 62. 发明授权
    • Method of displaying multiple kinds of independently processed display data
    • 显示多种独立处理的显示数据的方法
    • US08007362B2
    • 2011-08-30
    • US11392773
    • 2006-03-30
    • Koji AoyamaMitsuteru Fukushima
    • Koji AoyamaMitsuteru Fukushima
    • A63F9/24A63F13/00G06F17/00G06F19/00
    • A63F13/53A63F13/12A63F13/795
    • A terminal apparatus executes different kinds of network games provided by a server group. The user of the terminal apparatus can register other users who become acquainted with the user through network games in a friend list provided for each user. While the terminal device runs different game programs for different kinds of games, the terminal apparatus runs a common friend list program regardless of the game types. When the display of a game image is set to a window mode, the friend list program displays a friend list in a friend list window that is set separate from a game window. When the display of a game image is set to a full-screen mode, the friend list program displays a friend list synthesized with the game image in the form of a semi-transparent image.
    • 终端装置执行由服务器组提供的不同种类的网络游戏。 终端装置的用户可以通过网络游戏在为每个用户提供的朋友列表中登记与用户熟悉的其他用户。 虽然终端设备针对不同类型的游戏运行不同的游戏程序,但终端设备运行公共的朋友列表程序,而不管游戏类型如何。 当游戏图像的显示设置为窗口模式时,朋友列表程序在与游戏窗口分开设置的朋友列表窗口中显示朋友列表。 当游戏图像的显示设置为全屏模式时,朋友列表程序以半透明图像的形式显示与游戏图像合成的朋友列表。
    • 64. 发明授权
    • Image processing apparatus and method, recording medium, and program
    • 图像处理装置和方法,记录介质和程序
    • US07817875B2
    • 2010-10-19
    • US11671254
    • 2007-02-05
    • Xavier MichelKoji Aoyama
    • Xavier MichelKoji Aoyama
    • G06K9/38G06K9/40
    • G06T5/002G06T5/003G06T5/20G06T2207/20192
    • An image processing apparatus including a contrast detector that detects a contrast intensity of a pixel in a first image; a flat-intensity detector that detects a flat intensity of the pixel; an edge-intensity detector that detects an edge intensity of the pixel; a flat-weight setter that sets a flat weight for the pixel; an edge-weight setter that sets an edge weight for the pixel; an attenuator that attenuates components in a predetermined frequency band of the first image to form a second image; a first combiner that combines the first and second images to form a third image using weights based on the flat weight; an edge enhancer that enhances edges in the third image to form a fourth image; and a second combiner that combines the first and fourth images using weights based on the edge weight.
    • 一种图像处理装置,包括检测第一图像中的像素的对比度强度的对比度检测器; 平坦度检测器,其检测像素的平坦强度; 边缘强度检测器,其检测像素的边缘强度; 平板重量设定器,为像素设定平重; 边缘权重设定器,用于设置像素的边缘权重; 衰减器,衰减所述第一图像的预定频带中的分量以形成第二图像; 第一组合器,其使用基于所述平重的权重组合所述第一和第二图像以形成第三图像; 边缘增强器,其增强所述第三图像中的边缘以形成第四图像; 以及第二组合器,其使用基于边缘权重的权重来组合第一和第四图像。
    • 65. 发明申请
    • IMAGE PROCESSING APPARATUS AND METHOD, RECORDING MEDIUM, AND PROGRAM
    • 图像处理设备和方法,记录介质和程序
    • US20080199099A1
    • 2008-08-21
    • US11671255
    • 2007-02-05
    • Xavier MichelKoji Aoyama
    • Xavier MichelKoji Aoyama
    • G06K9/40
    • G06T3/403G06T5/002G06T5/003G06T5/20G06T2207/20192
    • An image processing apparatus includes an edge-direction detector that detects an edge direction in an original image; a confidence detector that detects a confidence of the edge direction; a contrast detector that detects a contrast intensity; a texture-contrast-weight setter that sets a texture-contrast weight; an edge-contrast-weight setter that sets an edge-contrast weight; a texture-weight setter that sets a texture weight; an edge-weight setter that sets an edge weight; a texture filter that performs texture filtering to generate a texture-filter image; an edge filter that performs edge filtering to generate an edge-filter image; a texture combiner that combines the original image and the texture-filter image to generate a texture-combination image; and an edge combiner that combines the texture-combination image and the edge-filter image to generate an edge-combination image.
    • 图像处理装置包括检测原始图像中的边缘方向的边缘方向检测器; 检测边缘方向的置信度的置信度检测器; 检测对比度强度的对比度检测器; 设置纹理对比度权重的纹理对比度设置器; 设置边缘对比度权重的边缘对比度权重设定器; 设置纹理重量的纹理重量设定器; 设置边缘权重的边缘权重设定器; 纹理过滤器,其执行纹理过滤以生成纹理过滤图像; 边缘滤波器,其执行边缘滤波以生成边缘滤波器图像; 纹理组合器,其组合原始图像和纹理滤波器图像以生成纹理组合图像; 以及边缘组合器,其组合纹理组合图像和边缘滤波器图像以生成边缘组合图像。
    • 66. 发明申请
    • Image Processing Device And Method, Storage Medium, And Program
    • 图像处理设备和方法,存储介质和程序
    • US20080122877A1
    • 2008-05-29
    • US11629316
    • 2005-06-06
    • Koji Aoyama
    • Koji Aoyama
    • G06T3/40
    • G06T3/4007G06T3/4023G06T11/203
    • The present invention relates to an image processing device and method, a storage medium, and a program for performing high-quality enlargement processing. Of input image data, a data buffer 32 holds data of target-pixel neighborhood data necessary for the enlargement processing. A data-position swapping unit 33 swaps the data positions of the target-pixel neighborhood data, as needed. A pixel priority determining unit 34 determines background color or foreground color with respect to each pixel of the target-pixel neighborhood data whose data positions were sapped. A data-selection-flag determining unit 36 determines a data selection flag of the target-pixel neighborhood data, the data selection flag being supplied from the pixel priority determining unit 34. Based on the data selection flag supplied from the data-selection-flag determining unit 36, a data selector 37 selects image data to be fit into the position of the target pixel from the target-pixel neighborhood data supplied from the data-position swapping unit 33. The present invention is applicable to OSD devices.
    • 本发明涉及图像处理装置和方法,存储介质和用于执行高质量放大处理的程序。 在输入图像数据中,数据缓冲器32保存放大处理所需的目标像素邻域数据的数据。 数据位置交换单元33根据需要交换目标像素邻域数据的数据位置。 像素优先级确定单元34针对其数据位置被挖掘的目标像素邻域数据的每个像素确定背景颜色或前景色。 数据选择标志确定单元36确定目标像素邻域数据的数据选择标志,从像素优先级确定单元34提供数据选择标志。 数据选择器37根据从数据选择标志确定单元36提供的数据选择标志,从从数据位置交换单元提供的目标像素邻域数据中选择拟合到目标像素的位置的图像数据 33。 本发明可应用于OSD设备。
    • 67. 发明授权
    • Image processing method, image processing apparatus and image pickup apparatus and display apparatus suitable for the application of image processing method
    • 图像处理方法,图像处理装置以及适用于图像处理方法的图像拾取装置和显示装置
    • US07352915B2
    • 2008-04-01
    • US10760674
    • 2004-01-21
    • Atsushi NoseKoji AoyamaTohru KurataKimitaka Wada
    • Atsushi NoseKoji AoyamaTohru KurataKimitaka Wada
    • G06K9/40
    • G06T3/0018G06T5/006H04N5/217H04N5/3572
    • A lattice dividing unit determines lattice lines to divide parameters of all points of a picture at every division and supplies distortion correction parameters (distortion correction coordinates) on the lattice points to a distortion correction memory. A polynomial of degree n coefficient deriving unit expresses all distortion correction coordinates on each lattice line in the form of a function relative to positions on lattice lines and approximates the distortion correction coordinates by desired division polynomial of degree n. Further, a sample point deriving unit compresses distortion correction parameters based upon the division polynomial of degree n obtained from the polynomial of degree n coefficient deriving unit. In the derived division polynomial of degree n, internal points which result from dividing both ends of the division polynomial of degree n by n is supplied to the distortion correction memory as new distortion correction parameters (approximated distortion correction coordinates). Thus, a memory capacity of a required memory can be reduced in the image processing for correcting distortion of an image.
    • 格子分割单元确定格线,以分割每个分割图像的所有点的参数,并将格点上的失真校正参数(失真校正坐标)提供给失真校正存储器。 度数n系数导出单元的多项式以关于格子线上的位置的函数形式在每个格子线上表示所有失真校正坐标,并通过n阶的期望分割多项式近似失真校正坐标。 此外,采样点导出单元基于从度数n系数导出单元的多项式获得的度数n的分割多项式来压缩失真校正参数。 在度数n的导出分割多项式中,将由度n的分割多项式的两端分为n的内部点作为新的失真校正参数(近似失真校正坐标)提供给失真校正存储器。 因此,在用于校正图像失真的图像处理中,可以减少所需存储器的存储容量。
    • 68. 发明授权
    • Interpolating apparatus and method
    • 内插装置和方法
    • US06603888B1
    • 2003-08-05
    • US09413880
    • 1999-10-07
    • Atsushi KikuchiKoji Aoyama
    • Atsushi KikuchiKoji Aoyama
    • G06K932
    • G06T3/4007H03H17/0294H03H17/0657H04N5/2628H04N7/0135
    • In multiplying circuits, filter coefficients are multiplied to tap outputs between the stages of delay circuits, respectively. The multiplication outputs are added by an adding circuit, thereby performing an interpolation arithmetic operation. Phase information and coefficient adjustment data are inputted to a coefficient generating circuit. Either the nearest neighborhood approximating method or the bilinear approximating method can be selected by the coefficient adjustment data, and any of the intermediate characteristics between the nearest neighborhood approximating method and the bilinear approximating method, characteristics which are closer to those of the nearest neighborhood approximating method between the nearest neighborhood approximating method and the bilinear approximating method, and characteristics which are closer to those of the bilinear approximating method can be freely set.
    • 在乘法电路中,滤波器系数分别乘以延迟电路级之间的抽头输出。 乘法输出由加法电路相加,进行插值运算。 相位信息和系数调整数据被输入到系数发生电路。 可以通过系数调整数据选择最近的邻近方法或双线性近似方法,以及最近的邻近近似方法和双线性近似方法之间的任何中间特征,更接近最近的邻近近似方法的特征 在近邻近似法和双线性逼近法之间,可以自由设置更接近于双线性近似法的特征。
    • 69. 发明授权
    • Image processor for conversion of scanning lines and conversion method of the same
    • 图像处理器用于转换扫描线和转换方法相同
    • US06317159B1
    • 2001-11-13
    • US09293139
    • 1999-04-16
    • Koji Aoyama
    • Koji Aoyama
    • H04N701
    • G09G5/005G09G1/167G09G5/006G09G2340/0414H04N7/012H04N7/0135
    • A scanning line number converting apparatus using a linear array type multi-parallel processor constructed by an input image data storing unit, a plurality of element processors which has a data memory section and an ALU array section and are provided in parallel and operate in accordance with the same command for a plurality of data, and an output image data storing unit, wherein one of the element processors is used as an FIFO and image data is transferred to the other element processors, and an interpolation arithmetic operation for a scanning line number conversion is executed by the element processor on the transfer destination side, so that the scanning line number conversion can be performed without using any image memory and memory controller.
    • 一种使用由输入图像数据存储单元构成的线性阵列型多并行处理器的扫描线数转换装置,具有数据存储部分和ALU阵列部分的多个元件处理器并行设置并按照 用于多个数据的相同命令,以及输出图像数据存储单元,其中元素处理器中的一个被用作FIFO,并且图像数据被传送到其他元件处理器,以及用于扫描行数转换的插值算术运算 由转移目的地侧的元件处理器执行,从而可以在不使用任何图像存储器和存储器控制器的情况下执行扫描行号码转换。