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    • 1. 发明申请
    • IMAGE PROCESSING DEVICE, IMAGE PROCESSING METHOD, AND IMAGE PROCESSING PROGRAM
    • 图像处理设备,图像处理方法和图像处理程序
    • US20130063424A1
    • 2013-03-14
    • US13542141
    • 2012-07-05
    • Nobuo UEKIHironori MORITakashi KOJIMAYuki TOKIZAKIKazuhiko NISHIBORISeiji KIMURA
    • Nobuo UEKIHironori MORITakashi KOJIMAYuki TOKIZAKIKazuhiko NISHIBORISeiji KIMURA
    • G06T15/00
    • H04N13/261
    • Provided is an image processing device including a congruence degree detecting unit which detects a degree of congruence of each of multiple scenes with respect to an input image made of a two-dimensional image, a depth image generating unit which generates, with respect to the input image, depth images each obtained by a technique corresponding to each of the scenes, a blending unit which blends the depth images, which are generated by the depth image generating unit and each generated by a technique corresponding to each of the scenes, at a blending ratio based on the degree of congruence of each of the scenes, to generate a blended depth image, and a three-dimensional image generating unit which generates a three-dimensional image, which can be viewed three-dimensionally, made of a left-eye image and a right-eye image generated by shifting each pixel of the input image using the blended depth image.
    • 提供了一种图像处理装置,其包括:相关度检测单元,其检测多个场景中的每一个相对于由二维图像构成的输入图像的一致度;深度图像生成单元,相对于输入 通过与每个场景相对应的技术获得的图像,深度图像,混合单元,其将由深度图像生成单元生成的深度图像和由与每个场景相对应的技术生成的深度图像混合在一起, 基于每个场景的一致度的比率,以产生混合深度图像;以及三维图像生成单元,其生成可以三维地观看由左眼构成的三维图像的三维图像生成单元 图像和通过使用混合深度图像移位输入图像的每个像素而产生的右眼图像。
    • 3. 发明授权
    • Image display apparatus
    • US07126642B2
    • 2006-10-24
    • US09956009
    • 2001-09-20
    • Aya TakechiHiroyuki KojimaNobuo Ueki
    • Aya TakechiHiroyuki KojimaNobuo Ueki
    • H04N11/20H04N7/01
    • H04N7/0122
    • There is provided an image display apparatus which automatically detects a picture defect and shifts an image region to eliminate the picture defect. The image display apparatus includes a memory unit for temporarily storing an input image signal, a memory control unit for controlling a readout start address for the memory unit, a display unit to which the image signal read out of the memory unit is supplied, a detection unit of an aspect ratio of the input image signal, and an address control signal generation unit to which an aspect ratio detection output is supplied from the detection unit and which generates a readout start address control signal for the memory unit from the input image signal. When the input image signal having an aspect ratio different from an aspect ratio of image screen display of the display unit is supplied, a readout start address is controlled on the basis of the address control signal generated by the address control signal generation unit. By this, an image region is automatically shifted and a picture defect is prevented without changing the aspect ratio of the input image signal when an object is a human figure.
    • 4. 发明申请
    • Image signal processing apparatus and processing method
    • 图像信号处理装置及处理方法
    • US20050062886A1
    • 2005-03-24
    • US10498426
    • 2002-12-13
    • Takaya HoshinoToshio SarugakuIkuo SomeyaMakoto KondoKazuhiko NishiboriKoji AoyamaYukihiko MogiNobuo UekiMasuyoshi Kurokawa
    • Takaya HoshinoToshio SarugakuIkuo SomeyaMakoto KondoKazuhiko NishiboriKoji AoyamaYukihiko MogiNobuo UekiMasuyoshi Kurokawa
    • H04N5/253G09G5/00G09G5/391H04N5/14H04N7/01
    • H04N7/0132H04N5/145H04N7/014Y10S348/91
    • The present invention provides an image signal processing apparatus and a method thereof in which each of the fields forming the unit-frame is specified, with respect to the inputted image signal, based on a difference value calculated in signal level between a detected pixel in a current field and a detected pixel at the same position in a field which comes one frame behind the current field, a motion vector for a field which comes two frames behind the current field is detected, with respect to the detected pixel in the current field, the detected pixel is shifted, with respect to the specified first field, in a direction opposite to the motion vector within the range of the detected motion vector, the detected pixel is shifted, with respect to the specified fourth field, in a direction along the motion vector, and the detected pixels is shifted, with respect to the specified second and third fields, so as to make the pixels gradually closer to the pixel position shifted with respect to the fourth field, in the consecutive order of the fields from the first field, in the direction along the motion vector or in the direction opposite to the motion vector.
    • 本发明提供了一种图像信号处理装置及其方法,其中,基于在信号电平中计算出的信号电平中的检测像素之间的差值,相对于输入的图像信号来指定形成单位帧的每个场 当前场和位于当前场后面一帧的场中的相同位置处的检测像素,相对于当前场中的检测像素检测到在当前场后面两帧的场的运动矢量, 检测到的像素相对于规定的第一场沿与检测到的运动矢量的范围内的运动矢量相反的方向移位,检测像素相对于规定的第四场沿着沿着 运动矢量,并且检测像素相对于规定的第二和第三场移动,以使像素逐渐更接近于相对于相对移动的像素位置 以与运动矢量相反的方向沿着运动矢量的方向以第一场的场的连续顺序,以第一场为单位。
    • 5. 发明授权
    • Video signal converter, conversion method of video signal, image display unit using them and television receiver
    • 视频信号转换器,视频信号的转换方法,使用它们的图像显示单元和电视接收机
    • US06466269B1
    • 2002-10-15
    • US09406491
    • 1999-09-27
    • Ikuo SomeyaAkira ShimizuNobuo Ueki
    • Ikuo SomeyaAkira ShimizuNobuo Ueki
    • H04N701
    • G09G5/005G06T3/4007G09G3/3611G09G5/006G09G2310/0229G09G2340/0407H04N7/0125H04N7/0145
    • This invention relates to a video signal converter, a conversion method of video signal, respectively suitable to be applied when a video signal according to National Television System Committee (NTSC) is illustratively converted to a video signal corresponding to an extended graphics array (XGA), an image display unit using the converter and conversion method, and a television receiver. A signal in each field of a video signal SNT according to NTSC in which the number of lines is 252.5 (effective line number is 240) is converted to a signal in each frame of a video signal SXG corresponding to XGA in which the number of lines is 840 (effective line number is 768). A video signal converter is composed of an image adaptive double-speed conversion circuit for converting a video signal SNT to a video signal S2N according to an interlaced scanning method in which the number of lines is doubled and an interpolation circuit for converting the video signal S2N to a video signal SXG. A video signal S2N acquired by image adaptive conversion processing is a video signal of high image quality. A video signal SXG acquired by interpolation processing based upon the video signal S2N is a video signal of high image quality free of the deterioration of the quality of an image, compared with a video signal SXG acquired only by interpolation processing based upon a video signal SNT.
    • 本发明涉及一种视频信号转换器,一种视频信号的转换方法,分别适用于当根据国家电视系统委员会(NTSC)的视频信号被示意性地转换为对应于扩展图形阵列(XGA)的视频信号时, ,使用转换器和转换方法的图像显示单元,以及电视接收机。 根据NTSC的视频信号SNT的每个场中的信号,其中线数为252.5(有效行数为240)被转换为对应于XGA的视频信号SXG的每帧中的信号,其中行数 是840(有效行号是768)。 视频信号转换器由图像自适应双速转换电路组成,用于根据其行数加倍的隔行扫描方法将视频信号SNT转换为视频信号S2N,以及用于将视频信号S2N 到视频信号SXG。 通过图像自适应转换处理获得的视频信号S2N是高图像质量的视频信号。 通过基于视频信号S2N的内插处理获得的视频信号SXG与仅通过基于视频信号SNT的内插处理而获得的视频信号SXG相比,具有高图像质量的视频信号,而没有图像质量的劣化 。
    • 6. 发明授权
    • Image processing device, image processing method, and image processing program
    • 图像处理装置,图像处理方法和图像处理程序
    • US09071832B2
    • 2015-06-30
    • US13542141
    • 2012-07-05
    • Nobuo UekiHironori MoriTakashi KojimaYuki TokizakiKazuhiko NishiboriSeiji Kimura
    • Nobuo UekiHironori MoriTakashi KojimaYuki TokizakiKazuhiko NishiboriSeiji Kimura
    • H04N13/02
    • H04N13/261
    • Provided is an image processing device including a congruence degree detecting unit which detects a degree of congruence of each of multiple scenes with respect to an input image made of a two-dimensional image, a depth image generating unit which generates, with respect to the input image, depth images each obtained by a technique corresponding to each of the scenes, a blending unit which blends the depth images, which are generated by the depth image generating unit and each generated by a technique corresponding to each of the scenes, at a blending ratio based on the degree of congruence of each of the scenes, to generate a blended depth image, and a three-dimensional image generating unit which generates a three-dimensional image, which can be viewed three-dimensionally, made of a left-eye image and a right-eye image generated by shifting each pixel of the input image using the blended depth image.
    • 提供了一种图像处理装置,其包括:相关度检测单元,其检测多个场景中的每一个相对于由二维图像构成的输入图像的一致度;深度图像生成单元,相对于输入 通过与每个场景相对应的技术获得的图像,深度图像,混合单元,其将由深度图像生成单元生成的深度图像和由与每个场景相对应的技术生成的深度图像混合在一起, 基于每个场景的一致度的比率,以产生混合深度图像;以及三维图像生成单元,其生成可以三维地观看由左眼构成的三维图像的三维图像生成单元 图像和通过使用混合深度图像移位输入图像的每个像素而产生的右眼图像。
    • 8. 发明申请
    • Image display apparatus
    • 图像显示装置
    • US20050195329A1
    • 2005-09-08
    • US11116253
    • 2005-04-28
    • Aya TakechiHiroyuki KojimaNobuo Ueki
    • Aya TakechiHiroyuki KojimaNobuo Ueki
    • H04N5/46H04N3/27H04N7/015
    • H04N7/0122
    • There is provided an image display apparatus which automatically detects a picture defect and shifts an image region to eliminate the picture defect. The image display apparatus includes a memory unit for temporarily storing an input image signal, a memory control unit for controlling a readout start address for the memory unit, a display unit to which the image signal read out of the memory unit is supplied, a detection unit of an aspect ratio of the input image signal, and an address control signal generation unit to which an aspect ratio detection output is supplied from the detection unit and which generates a readout start address control signal for the memory unit from the input image signal. When the input image signal having an aspect ratio different from an aspect ratio of image screen display of the display unit is supplied, a readout start address is controlled on the basis of the address control signal generated by the address control signal generation unit. By this, an image region is automatically shifted and a picture defect is prevented without changing the aspect ratio of the input image signal when an object is a human figure.
    • 提供了一种图像显示装置,其自动检测图像缺陷并移位图像区域以消除图像缺陷。 图像显示装置包括用于临时存储输入图像信号的存储单元,用于控制存储单元的读出开始地址的存储器控​​制单元,提供存储单元读出的图像信号的显示单元, 输入图像信号的纵横比的单位,以及从检测单元提供宽高比检测输出的地址控制信号生成单元,并从输入图像信号生成用于存储单元的读出开始地址控制信号。 当提供具有与显示单元的图像屏幕显示的宽高比不同的输入图像信号时,基于由地址控制信号生成单元生成的地址控制信号来控制读出开始地址。 由此,当物体是人物时,图像区域被自动移位并且防止了图像缺陷而不改变输入图像信号的纵横比。
    • 9. 发明授权
    • Image display apparatus
    • 图像显示装置
    • US07420617B2
    • 2008-09-02
    • US11116253
    • 2005-04-28
    • Aya TakechiHiroyuki KojimaNobuo Ueki
    • Aya TakechiHiroyuki KojimaNobuo Ueki
    • H04N11/20H04N7/01
    • H04N7/0122
    • An image display apparatus that detects a picture defect and shifts an image region to eliminate the picture defect. The image display apparatus includes a memory unit that temporarily stores an input image signal, a memory control unit that controls a readout start address for the memory unit, a display unit to which the image signal read out of the memory unit is supplied, a detection unit that detects an aspect ratio of the input image signal, and an address control signal generation unit which receives an output from detection unit and generates a readout start address control signal for the memory unit.
    • 一种检测图像缺陷并移动图像区域以消除图像缺陷的图像显示装置。 图像显示装置包括临时存储输入图像信号的存储单元,控制存储单元的读出开始地址的存储器控​​制单元,提供存储单元读出的图像信号的显示单元, 检测输入图像信号的纵横比的单元,以及接收来自检测单元的输出并产生用于存储单元的读出开始地址控制信号的地址控制信号生成单元。
    • 10. 发明授权
    • Image signal processing apparatus and processing method
    • 图像信号处理装置及处理方法
    • US07215377B2
    • 2007-05-08
    • US10498426
    • 2002-12-13
    • Takaya HoshinoToshio SarugakuIkuo SomeyaMakoto KondoKazuhiko NishiboriKoji AoyamaYukihiko MogiNobuo UekiMasuyoshi Kurokawa
    • Takaya HoshinoToshio SarugakuIkuo SomeyaMakoto KondoKazuhiko NishiboriKoji AoyamaYukihiko MogiNobuo UekiMasuyoshi Kurokawa
    • H04N7/01
    • H04N7/0132H04N5/145H04N7/014Y10S348/91
    • The present invention provides an image signal processing apparatus and a method thereof in which each of the fields forming the unit-frame is specified, with respect to the inputted image signal, based on a difference value calculated in signal level between a detected pixel in a current field and a detected pixel at the same position in a field which comes one frame behind the current field, a motion vector for a field which comes two frames behind the current field is detected, with respect to the detected pixel in the current field, the detected pixel is shifted, with respect to the specified first field, in a direction opposite to the motion vector within the range of the detected motion vector, the detected pixel is shifted, with respect to the specified fourth field, in a direction along the motion vector, and the detected pixels is shifted, with respect to the specified second and third fields, so as to make the pixels gradually closer to the pixel position shifted with respect to the fourth field, in the consecutive order of the fields from the first field, in the direction along the motion vector or in the direction opposite to the motion vector.
    • 本发明提供了一种图像信号处理装置及其方法,其中,基于在信号电平中计算出的信号电平中的检测像素之间的差值,相对于输入的图像信号来指定形成单位帧的每个场 当前场和位于当前场后面一帧的场中的相同位置处的检测像素,相对于当前场中的检测像素检测到在当前场后面两帧的场的运动矢量, 检测到的像素相对于规定的第一场沿与检测到的运动矢量的范围内的运动矢量相反的方向移位,检测像素相对于规定的第四场沿着沿着 运动矢量,并且检测像素相对于规定的第二和第三场移动,以使像素逐渐更接近于相对于相对移动的像素位置 以与运动矢量相反的方向沿着运动矢量的方向以第一场的场的连续顺序,以第一场为单位。