会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 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。
    • 4. 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。
    • 7. 发明授权
    • Image signal processing apparatus and processing method
    • 图像信号处理装置及处理方法
    • US07221403B2
    • 2007-05-22
    • US10498432
    • 2002-12-13
    • Koji AoyamaKazuhiko NishiboriMakoto KondoTakaya Hoshino
    • Koji AoyamaKazuhiko NishiboriMakoto KondoTakaya Hoshino
    • H04N7/01
    • H04N7/0132H04N7/0115H04N7/014Y10S348/91
    • The present invention provides an image signal processing apparatus and a method thereof which perform double-speed conversion on images subjected to telecine conversion and in which a first field is specified based on difference values between pixel signal levels calculated with respect to respective detected pixels, write pixel positions which are shifted from the positions of the detected pixels in the vector directions of motion vectors are calculated in a field following the first field, the calculated write pixel positions are stored in correspondence with the motion vectors, interpolation pixel data is calculated from pixel data read from the first field in correspondence with the stored write pixel positions and motion vectors, and the calculated interpolation pixel data is written into the write pixel positions.
    • 本发明提供了一种图像信号处理装置及其方法,该图像信号处理装置及其方法对经过电视电影转换的图像执行双速转换,并且其中基于针对各个检测像素计算的像素信号电平之间的差值来指定第一场,写入 在运动矢量的矢量方向上从被检测像素的位置偏移的像素位置在第一场后的场中被计算,计算出的写入像素位置与运动矢量相对应地存储,从像素计算内插像素数据 与存储的写入像素位置和运动矢量对应地从第一场读取的数据,并将所计算的内插像素数据写入写入像素位置。
    • 8. 发明授权
    • Image processing with pixel interpolation
    • 具有像素插值的图像处理
    • US07327397B2
    • 2008-02-05
    • US10498204
    • 2002-12-13
    • Koji AoyamaMakoto KondoKazuhiko Nishibori
    • Koji AoyamaMakoto KondoKazuhiko Nishibori
    • H04N5/14H04N7/01H04N9/64H04N11/20G06K9/32G06K9/40
    • H04N7/0132H04N7/0112H04N7/014
    • The present invention provides an image signal processing apparatus and a method thereof which shifts positions of each detected pixel in image signals generated by performing double-speed conversion, wherein a difference value in pixel 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 is calculated, to specify a first field, a motion vector for a field which comes one frame or two frames behind the current field is detected with respect to the detected pixel in the current field, interpolation pixel data for the detected pixel is calculated based on the detected pixel in the current field and the each pixel in the field which comes one frame or two frames behind the current field, the interpolation pixel data is disposed in the pixel position obtained by shifting the position of the detected pixel in the current field in a direction along the motion vector, in a field subsequent to the first field, and the shift amount is sequentially increased every time the field shifts from the first field to the following fields within a range of a vector quantity of the detected motion vector.
    • 本发明提供了一种图像信号处理装置及其方法,该图像信号处理装置及其方法将通过执行双速转换而生成的图像信号中的每个检测像素的位置移位,其中,当前场中检测到的像素与检测到的像素信号电平之差 计算出在当前场后面一帧的场中的相同位置处的像素,以指定第一场,针对检测到的像素检测到在当前场后面一帧或两帧的场的运动矢量 在当前场中,基于当前场中检测到的像素和在当前场后一帧或两帧的场中的每个像素来计算检测像素的内插像素数据,内插像素数据被布置在 通过在随后的场中沿着运动矢量的方向移动当前场中的检测像素的位置而获得的像素位置 并且每当场从检测到的运动矢量的矢量的范围内的场从第一场向后续场移动时,移位量依次增加。
    • 9. 发明申请
    • Image signal processing apparatus and processing method
    • 图像信号处理装置及处理方法
    • US20050012856A1
    • 2005-01-20
    • US10498204
    • 2002-12-13
    • Koji AoyamaMakoto KondoKazuhiko Nishibori
    • Koji AoyamaMakoto KondoKazuhiko Nishibori
    • H04N5/253G09G5/00G09G5/391H04N7/01H04N11/20
    • H04N7/0132H04N7/0112H04N7/014
    • The present invention provides an image signal processing apparatus and a method thereof which shifts positions of each detected pixel in image signals generated by performing double-speed conversion, wherein a difference value in pixel 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 is calculated, to specify a first field, a motion vector for a field which comes one frame or two frames behind the current field is detected with respect to the detected pixel in the current field, interpolation pixel data for the detected pixel is calculated based on the detected pixel in the current field and the each pixel in the field which comes one frame or two frames behind the current field, the interpolation pixel data is disposed in the pixel position obtained by shifting the position of the detected pixel in the current field in a direction along the motion vector, in a field subsequent to the first field, and the shift amount is sequentially increased every time the field shifts from the first field to the following fields within a range of a vector quantity of the detected motion vector.
    • 本发明提供了一种图像信号处理装置及其方法,该图像信号处理装置及其方法将通过执行双速转换而生成的图像信号中的每个检测像素的位置移位,其中,当前场中检测到的像素与检测到的像素信号电平之差 计算出在当前场后面一帧的场中的相同位置处的像素,以指定第一场,针对检测到的像素检测到在当前场后面一帧或两帧的场的运动矢量 在当前场中,基于当前场中检测到的像素和在当前场后一帧或两帧的场中的每个像素来计算检测像素的内插像素数据,内插像素数据被布置在 通过在随后的场中沿着运动矢量的方向移动当前场中的检测像素的位置而获得的像素位置 并且每当场从检测到的运动矢量的矢量的范围内的场从第一场向后续场移动时,移位量依次增加。
    • 10. 发明授权
    • FIR filter and setting method of coefficient thereof
    • US07028061B2
    • 2006-04-11
    • US09874061
    • 2001-06-06
    • Yukihiko MogiKazuhiko Nishibori
    • Yukihiko MogiKazuhiko Nishibori
    • G06F17/10
    • H03H17/06
    • An FIR filter and setting method of filter coefficients thereof enabling the prevention of breakdown of equi-ripple of weighted approximation error and preservation of gain of the pass band into approximately constant. The setting method includes five steps. The initial setting step is that setting of the FIR filter, setting of the band, setting of coefficients of a pre-filter, and setting of initial extreme value point. The first step is that interpolation polynomial equation is generated for interpolating amplitude characteristic from the present extreme value point of the amplitude characteristic of the frequency. The second step is that a new extreme value point is determined from the amplitude characteristic obtained from the interpolation polynomial equation that is obtained in the first step. The third step is that judgement is performed whether or not position of the extreme value is approximated within required range while repeating the first step and the second step. The fourth step is that finding of the filter coefficients is performed from the approximated amplitude characteristic obtained in the third step.