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    • 1. 发明授权
    • Apparatus for monitoring quality of picture in transmission
    • 用于监测传输中图像质量的装置
    • US06943827B2
    • 2005-09-13
    • US10118261
    • 2002-04-09
    • Ryoichi KawadaOsamu SugimotoMasahiro WadaShuichi Matsumoto
    • Ryoichi KawadaOsamu SugimotoMasahiro WadaShuichi Matsumoto
    • H04N17/00H04N17/02
    • H04N17/00
    • A first characteristic value extracting unit extracts a characteristic value from a picture transmitted from a transmission side, and a second characteristic value extracting unit extracts a characteristic value from a picture received on a reception side. These extracted characteristic values are supplied to a central monitoring unit through low speed lines, respectively. In the central monitoring unit, an MSE (mean square error) is assessed from the data by an MSE assessing unit. The first and second characteristic value extracting units divide an input picture into blocks, subject the blocks to an orthogonal transformation, or subject the blocks to PN sequence multiplication before the orthogonal transformation, and extract and output orthogonal transformation coefficients. The MSE assessing unit determines the differences between corresponding coefficients on the transmission side and the reception side and squares the differences, adds the squared differences for every coefficients or every blocks, and assess an MSE based on the added values referred to a table. With this operation, the MSE can be effectively assessed using a smaller amount of extracted data (accordingly, slower speed lines can be used in the central monitoring unit).
    • 第一特征值提取单元从从发送侧发送的图像中提取特征值,第二特征值提取单元从在接收侧接收的图像中提取特征值。 这些提取的特征值分别通过低速线路提供给中央监控单元。 在中央监测单位,MSE评估单位从数据评估MSE(均方误差)。 第一特征值提取单元和第二特征值提取单元将输入图像划分成块,将块进行正交变换,或者在正交变换之前对块进行PN序列乘法,并提取和输出正交变换系数。 MSE评估单元确定发送侧和接收侧的相应系数之间的差异,对差异进行平方,对每个系数或每个块添加平方差,并根据参考表的附加值来评估MSE。 通过此操作,可以使用较少量的提取数据有效地评估MSE(因此,中央监控单元可以使用较慢的速度线)。
    • 2. 发明授权
    • Device for automatically detecting picture degradation
    • 用于自动检测图像劣化的设备
    • US07199819B2
    • 2007-04-03
    • US10781632
    • 2004-02-20
    • Osamu SugimotoRyoichi KawadaAtsushi KoikeMasahiro Wada
    • Osamu SugimotoRyoichi KawadaAtsushi KoikeMasahiro Wada
    • H04N17/00
    • H04N17/00
    • Feature quantities of a transmitted picture and a received picture are extracted from a first and second block-by-block feature quantity extraction parts which are provided on a transmitting and receiving sides, respectively. The extracted feature quantities are transmitted to a block degradation calculation part which compares the transmitted feature quantities and finds the degree of picture quality degradation for each block. Next, a median filter replaces the degree of picture quality degradation for the each block with a median of the degrees of picture quality degradation among the neighboring blocks of the each block. Then, a degraded block detection part compares the median with a predetermined threshold and detects a degraded block. Finally, a degraded region detection part removes an isolated degraded block and detects a degraded region. According to the invention, local picture quality degradation in a frame caused by transmission failure can be automatically detected with high accuracy.
    • 从发送和接收侧分别提供的第一和第二逐块特征量提取部分提取发送图像和接收图像的特征量。 提取的特征量被发送到块劣化计算部分,其比较发送的特征量并且找出每个块的图像质量劣化程度。 接下来,中值滤波器用每个块的相邻块之间的图像质量劣化程度的中值替代每个块的图像质量劣化程度。 然后,劣化块检测部分将中值与预定阈值进行比较,并检测劣化块。 最后,劣化区域检测部分去除孤立的降级块并检测劣化区域。 根据本发明,可以以高精度自动检测由传输失败引起的帧中的局部图像质量劣化。
    • 4. 发明授权
    • Image matching device and method for motion pictures
    • 影像匹配装置及方法
    • US07773674B2
    • 2010-08-10
    • US11905281
    • 2007-09-28
    • Ryoichi KawadaOsamu SugimotoMasahiro WadaAtsushi Koike
    • Ryoichi KawadaOsamu SugimotoMasahiro WadaAtsushi Koike
    • H04B1/66
    • H04N5/145G06T7/223G06T2207/10016G06T2207/10021H04N7/014
    • A matching section performs motion estimation upon a predetermined processing unit of input video (p) by, e.g., an iterative gradient method. A motion vector (v) obtained by the iterative gradient method is obtained by the expression v=α·Δv+v0 (wherein v0 indicates an initial displacement motion vector and Δv indicates a differential vector). A characteristic amount extraction section extracts a characteristic amount from the distribution of motion vectors obtained by the motion estimation. A parameter determination section determines a conversion parameter α applied to the next processing unit by the characteristic amount. If the characteristic amount is equal to or larger than a predetermined threshold, the conversion parameter α is determined to be larger (e.g., α=1). If the characteristic amount is smaller than the threshold, the conversion parameter α is determined to be smaller (e.g., α=0.1).
    • 匹配部分通过例如迭代梯度法在输入视频(p)的预定处理单元上执行运动估计。 通过表达式v =α·&Dgr; v + v0(其中v0表示初始位移运动矢量,&Dgr; v表示微分矢量)获得通过迭代梯度法获得的运动矢量(v)。 特征量提取部从通过运动估计获得的运动矢量的分布中提取特征量。 参数确定部分通过特征量确定应用于下一处理单元的转换参数α。 如果特征量等于或大于预定阈值,则转换参数α被确定为较大(例如,α= 1)。 如果特征量小于阈值,则转换参数α被确定为较小(例如,α= 0.1)。
    • 5. 发明申请
    • Image matching device and method for motion pictures
    • 影像匹配装置及方法
    • US20080031339A1
    • 2008-02-07
    • US11905281
    • 2007-09-28
    • Ryoichi KawadaOsamu SugimotoMasahiro WadaAtsushi Koike
    • Ryoichi KawadaOsamu SugimotoMasahiro WadaAtsushi Koike
    • H04N7/12
    • H04N5/145G06T7/223G06T2207/10016G06T2207/10021H04N7/014
    • A matching section performs motion estimation upon a predetermined processing unit of input video (p) by, e.g., an iterative gradient method. A motion vector (v) obtained by the iterative gradient method is obtained by the expression v=α·Δv+v0 (wherein v0 indicates an initial displacement motion vector and Δv indicates a differential vector). A characteristic amount extraction section extracts a characteristic amount from the distribution of motion vectors obtained by the motion estimation. A parameter determination section determines a conversion parameter α applied to the next processing unit by the characteristic amount. If the characteristic amount is equal to or larger than a predetermined threshold, the conversion parameter α is determined to be larger (e.g., α=1). If the characteristic amount is smaller than the threshold, the conversion parameter α is determined to be smaller (e.g., α=0.1).
    • 匹配部分通过例如迭代梯度法在输入视频(p)的预定处理单元上执行运动估计。 通过迭代梯度方法获得的运动矢量(v)通过表达式v = alpha.Deltav + v 0 0获得(其中v 0表示初始位移运动矢量, Deltav表示差分向量)。 特征量提取部从通过运动估计获得的运动矢量的分布中提取特征量。 参数确定部分根据特征量确定应用于下一处理单元的转换参数α。 如果特征量等于或大于预定阈值,则将转换参数α确定为较大(例如,α= 1)。 如果特征量小于阈值,则将转换参数α确定为较小(例如,α= 0.1)。
    • 6. 发明授权
    • Image matching device and method for motion pictures
    • 影像匹配装置及方法
    • US07305032B2
    • 2007-12-04
    • US10620350
    • 2003-07-17
    • Ryoichi KawadaOsamu SugimotoMasahiro WadaAtsushi Koike
    • Ryoichi KawadaOsamu SugimotoMasahiro WadaAtsushi Koike
    • H04B1/66
    • H04N5/145G06T7/223G06T2207/10016G06T2207/10021H04N7/014
    • A matching section performs motion estimation upon a predetermined processing unit of input video (p) by, e.g., an iterative gradient method. A motion vector (v) obtained by the iterative gradient method is obtained by the expression v=α·Δv+v0 (wherein v0 indicates an initial displacement motion vector and Δv indicates a differential vector). A characteristic amount extraction section extracts a characteristic amount from the distribution of motion vectors obtained by the motion estimation. A parameter determination section determines a conversion parameter α applied to the next processing unit by the characteristic amount. If the characteristic amount is equal to or larger than a predetermined threshold, the conversion parameter α is determined to be larger (e.g., α=1). If the characteristic amount is smaller than the threshold, the conversion parameter α is determined to be smaller (e.g., α=0.1).
    • 匹配部分通过例如迭代梯度法在输入视频(p)的预定处理单元上执行运动估计。 通过迭代梯度方法获得的运动矢量(v)通过表达式v = alpha.Deltav + v 0 0获得(其中v 0表示初始位移运动矢量, Deltav表示差分向量)。 特征量提取部从通过运动估计获得的运动矢量的分布中提取特征量。 参数确定部分根据特征量确定应用于下一处理单元的转换参数α。 如果特征量等于或大于预定阈值,则将转换参数α确定为较大(例如,α= 1)。 如果特征量小于阈值,则将转换参数α确定为较小(例如,α= 0.1)。
    • 9. 发明授权
    • Positional difference correcting apparatus between two-route videos
    • 两路视频之间的位置差分校正装置
    • US06909468B2
    • 2005-06-21
    • US09984585
    • 2001-10-30
    • Ryoichi KawadaMasahiro WadaShuichi Matsumoto
    • Ryoichi KawadaMasahiro WadaShuichi Matsumoto
    • H04N5/14H04N5/073H04N17/00H04N9/475
    • H04N5/0736
    • Received videos through A and B routes are inputted in first and second variable devices and then delayed by a first and a second frame memory by one frame to be inputted in a comparator. Alternatively, these signals A and B are further delayed by one frame by third and forth frame memories and also inputted in the comparator. The comparator compares the signals obtained by delaying the signals A, B, AF and BF by one line and one pixel, respectively, between the A and B routes with respect to all combinations so as to detect the difference between them. Then, a signal having the minimum difference is detected and a first and a second memory control signal to make the difference smaller are outputted to the first and second variable delay devices. By repeating the processing, a horizontal difference, a vertical difference and a time axial difference are gradually, and then completely, corrected including when the original amount of the difference is larger than a frame delay.
    • 通过A和B路由接收的视频被输入到第一和第二可变设备中,然后由第一和第二帧存储器延迟一帧以输入比较器。 或者,这些信号A和B进一步被第三和第四帧存储器延迟一帧,并且还输入到比较器中。 比较器将通过将信号A,B,AF和BF分别延迟A和B路由之间的信号A,B,AF和BF获得的信号相对于所有组合进行比较,以便检测它们之间的差异。 然后,检测出具有最小差异的信号,并且使第一和第二存储器控制信号使差值较小,输出到第一和第二可变延迟装置。 通过重复该处理,水平差异,垂直差异和时间轴向差异逐渐地,然后完全校正,包括差异的原始量大于帧延迟的时间。