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    • 1. 发明授权
    • Confidence based weighting for color interpolation
    • 基于置信度的颜色插值加权
    • US07576783B2
    • 2009-08-18
    • US11051159
    • 2005-02-04
    • Hau HwangKing-Chung LaiAnanthapadmanabhan Kandhadai
    • Hau HwangKing-Chung LaiAnanthapadmanabhan Kandhadai
    • H04N5/228
    • H04N9/045H04N2209/046
    • A color interpolation method uses a first interpolation function (F1) to obtain a first missing color sub-pixel value for a pixel of interest and uses a second interpolation function (F2) to obtain a second missing color sub-pixel value for the pixel of interest. First metric (V) indicative of an edge extending in a first direction (D1) is obtained. Second metric (H) indicative of an edge extending in a second direction (D2) is obtained. The two metrics are used to generate first and second weighting factors (k1, k2). A confidence factor value can be used to place more emphasis on one metric versus the other metric in the determination of the weighting factors. In one embodiment, the sub-pixel value being interpolated is the weighted sum of the first weighting factor multiplied by the first missing color sub-pixel value plus the second weighting factor multiplied by the second missing color sub-pixel value.
    • 颜色插值方法使用第一内插函数(F1)获得感兴趣像素的第一缺失颜色子像素值,并且使用第二内插函数(F2)来获得第二内插函数(F2)的像素的第二缺失颜色子像素值 利益。 获得指示沿第一方向(D1)延伸的边缘的第一度量(V)。 获得指示沿第二方向(D2)延伸的边缘的第二度量(H)。 这两个度量用于产生第一和第二加权因子(k1,k2)。 在确定加权因子时,可以使用置信因子值来更加强调一个指标而不是其他指标。 在一个实施例中,被内插的子像素值是第一加权因子乘以第一缺失颜色子像素值加上乘以第二缺失颜色子像素值的第二加权因子的加权和。
    • 2. 发明申请
    • Confidence based weighting for color interpolation
    • 基于置信度的颜色插值加权
    • US20060176375A1
    • 2006-08-10
    • US11051159
    • 2005-02-04
    • Hau HwangKing-Chung LaiAnanthapadmanabhan Kandhadai
    • Hau HwangKing-Chung LaiAnanthapadmanabhan Kandhadai
    • H04N5/228
    • H04N9/045H04N2209/046
    • A color interpolation method uses a first interpolation function (F1) to obtain a first missing color sub-pixel value for a pixel of interest and uses a second interpolation function (F2) to obtain a second missing color sub-pixel value for the pixel of interest. First metric (V) indicative of an edge extending in a first direction (D1) is obtained. Second metric (H) indicative of an edge extending in a second direction (D2) is obtained. The two metrics are used to generate first and second weighting factors (k1, k2). A confidence factor value can be used to place more emphasis on one metric versus the other metric in the determination of the weighting factors. In one embodiment, the sub-pixel value being interpolated is the weighted sum of the first weighting factor multiplied by the first missing color sub-pixel value plus the second weighting factor multiplied by the second missing color sub-pixel value.
    • 颜色插值方法使用第一内插函数(F 1)来获得感兴趣像素的第一缺失颜色子像素值,并且使用第二内插函数(F 2)来获得第二内插函数 感兴趣的像素 获得指示沿第一方向(D 1)延伸的边缘的第一度量(V)。 获得指示沿第二方向(D 2)延伸的边缘的第二度量(H)。 这两个度量用于产生第一和第二加权因子(k 1,k 2)。 在确定加权因子时,可以使用置信因子值来更加强调一个指标而不是其他指标。 在一个实施例中,被内插的子像素值是第一加权因子乘以第一缺失颜色子像素值加上乘以第二缺失颜色子像素值的第二加权因子的加权和。
    • 4. 发明申请
    • Automatic white balance method and apparatus
    • 自动白平衡方法和装置
    • US20050286097A1
    • 2005-12-29
    • US11043572
    • 2005-01-25
    • Szepo HungAnanthapadmanabhan KandhadaiAndrew Chiu
    • Szepo HungAnanthapadmanabhan KandhadaiAndrew Chiu
    • H04N1/46H04N1/60H04N9/73
    • H04N1/608H04N1/6086H04N9/735
    • Automatic white balance of captured images can be performed based on a gray world assumption. Initially, a flat field gray image is captured for one or more reference illuminations. The statistics of the captured gray image are determined and stored for each reference illumination during a calibration process. For each subsequent captured image, the image is filtered to determine a subset of gray pixels. The gray pixels are further divided into a one or more gray clusters. The average weight of the one or more gray clusters is determined and a distance from the average weights to the reference illuminants is determined. An estimate of the illuminant is determined depending on the distances. White balance gains are applied to the image based on the estimated illuminant.
    • 可以基于灰色世界假设执行拍摄图像的自动白平衡。 最初,对于一个或多个参考照明捕获平坦场灰色图像。 在校准过程中,为每个参考照明确定捕获的灰度图像的统计数据并存储。 对于每个后续捕获的图像,滤波图像以确定灰色像素的子集。 灰色像素被进一步分成一个或多个灰色簇。 确定一个或多个灰色簇的平均重量,并确定从平均重量到参考光源的距离。 根据距离确定光源的估计。 基于估计的光源将白平衡增益应用于图像。
    • 10. 发明申请
    • SELECTION OF ENCODING MODES AND/OR ENCODING RATES FOR SPEECH COMPRESSION WITH OPEN LOOP RE-DECISION
    • 编码模式和/或编码速率用于语音压缩与开环重新决定
    • US20070219787A1
    • 2007-09-20
    • US11625797
    • 2007-01-22
    • Sharath ManjunathAnanthapadmanabhan KandhadaiEddie Choy
    • Sharath ManjunathAnanthapadmanabhan KandhadaiEddie Choy
    • G10L11/04
    • G10L19/22
    • In a device configurable to encode speech performing an open loop re-decision may comprise representing a speech signal by amplitude components and phase components for a current frame and a past frame. During the current frame, there may be an extraction of uncompressed amplitude components and uncompressed phase components. The amplitude components and the phase components from the past frame may then be retrieved. A set of features may be generated based on the uncompressed amplitude components from the current frame, the uncompressed phase components from the current frame, the amplitude components from the past frame, and the phase components from the past frame. The set of features may be checked as part of the open loop re-decision, and determining a final encoding decision based on the checking may be performed. The final encoding decision may be an encoding mode and/or encoding rate.
    • 在可配置为对执行开环重新判定的语音进行编码的装置中的装置可以包括通过当前帧和过去帧的幅度分量和相位分量表示语音信号。 在当前帧中,可以提取未压缩幅度分量和未压缩相位分量。 然后可以检索来自过去帧的幅度分量和相位分量。 可以基于来自当前帧的未压缩幅度分量,来自当前帧的未压缩相位分量,来自过去帧的幅度分量和来自过去帧的相位分量来生成一组特征。 可以将这组特征作为开环重新判定的一部分进行检查,并且可以执行基于检查来确定最终编码决定。 最终编码决定可以是编码模式和/或编码速率。