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    • 4. 发明申请
    • Adaptive pre-filtering system
    • 自适应预过滤系统
    • US20070064816A1
    • 2007-03-22
    • US11514723
    • 2006-09-01
    • Patricia ChiangLucas Hui
    • Patricia ChiangLucas Hui
    • H04N7/12H04B1/66
    • H04N19/86H04N19/117H04N19/139H04N19/14H04N19/172H04N19/176H04N19/61
    • A method for adaptive pre-filtering is disclosed, comprising the steps of: extracting tuning parameters from video encoding process; processing these tuning parameters to generate control parameters representative of the properties of the video data processed; coupling the control parameters to filter response; generating filter coefficients on selected filter response; and filtering the video data with the filter coefficients before video encoding. The filtering of video data is thus adapted to at least one or more tuning parameters of the video data and the encoding process. The filtering decreases the complexity of encoding by attenuation of high frequency, effectively decreasing the quantization step and reducing compression artifacts.
    • 公开了一种用于自适应预滤波的方法,包括以下步骤:从视频编码过程中提取调谐参数; 处理这些调整参数以产生表示所处理的视频数据的属性的控制参数; 将控制参数耦合到过滤器响应; 在选择的滤波器响应上产生滤波器系数; 并且在视频编码之前用滤波器系数对视频数据进行滤波。 因此,视频数据的滤波适应于视频数据和编码过程的至少一个或多个调谐参数。 滤波通过高频衰减降低了编码的复杂度,有效地减少了量化步长并减少了压缩伪像。
    • 8. 发明申请
    • Adaptive coring for video peaking
    • 视频峰值的自适应取芯
    • US20050012866A1
    • 2005-01-20
    • US10850963
    • 2004-05-20
    • Patricia ChiangLucas Hui
    • Patricia ChiangLucas Hui
    • G06T5/00G06T5/20H04N5/14H04N5/21H04N9/77
    • G06T5/003G06T5/20G06T7/13G06T2207/10016G06T2207/10024G06T2207/20012G06T2207/20192H04N5/142H04N5/21H04N9/77
    • A processor for enhancing an input luminance signal including: a means for calculating a chroma edge value associated with the input luminance signal; a means for measuring a luminance gradient associated with the input luminance signal; a peaking filter for processing the input luminance signal; a gain adjustment circuit having a gain function that is adjustable relative to the calculated chroma edge value, the gain adjustment circuit being operable to adjust the magnitude of the output of the peaking filter wherein: in a first range of luminance gradients, the output is an attenuated version of the input; in a second range of luminance gradients the output is directly proportional to the input; in a third range of luminance gradients, the output is inversely proportional to the input; wherein said enhanced luminance signal is the sum of the input and output of the peaking filter.
    • 一种用于增强输入亮度信号的处理器,包括:用于计算与输入亮度信号相关联的色度边缘值的装置; 用于测量与输入亮度信号相关联的亮度梯度的装置; 用于处理输入亮度信号的峰值滤波器; 所述增益调整电路具有相对于所计算的色度边缘值可调节的增益函数,所述增益调整电路可操作以调整所述峰值滤波器的输出的幅度,其中:在亮度梯度的第一范围内,所述输出为 衰减版本的输入; 在第二个亮度梯度范围内,输出与输入成正比; 在第三个亮度梯度范围内,输出与输入成反比; 其中所述增强亮度信号是峰值滤波器的输入和输出的总和。
    • 9. 发明授权
    • 2D ringing and overshoot control in image rescaling
    • 图像重新缩放中的2D振铃和过冲控制
    • US08682111B2
    • 2014-03-25
    • US13489240
    • 2012-06-05
    • Yong HuangLucas Hui
    • Yong HuangLucas Hui
    • G06K9/32
    • G06T3/4007
    • The methods and systems of this invention allow for independent adaptive control of ringing and overshoot effects in 2-dimensional array interpolation processes, including in image and video rescaling and analysis. The methods and systems can use either a column-wise or a row-wise interpolation, or a combination thereof. Each uses a respective preliminary interpolation of data, followed by ringing and/or overshoot control. Controllable parameters allow variability in the amount of ringing and/or overshoot retained in the interpolated data. The ringing and overshoot controls apply a local analysis of the data to adjust the preliminary interpolation results. The methods may be repeated iteratively, for example, to obtain a desired rescaling of an image data array.
    • 本发明的方法和系统允许对二维阵列插值过程中的振铃和过冲效应的独立自适应控制,包括在图像和视频重新缩放和分析中。 方法和系统可以使用列逐行或逐行插值,或其组合。 每个都使用数据的相应初步内插,随后是振铃和/或过冲控制。 可控参数允许内插数据中保留的振铃量和/或过冲的变化。 振铃和过冲控制应用数据的局部分析来调整初步插值结果。 可以重复地重复这些方法,例如,以获得图像数据阵列的期望的重新缩放。