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    • 1. 发明授权
    • Adaptive spatial variant interpolation for image upscaling
    • 用于图像放大的自适应空间变异插值
    • US09013511B2
    • 2015-04-21
    • US11502233
    • 2006-08-09
    • Yi LiangKing-Chung LaiKhaled Helmi El-Maleh
    • Yi LiangKing-Chung LaiKhaled Helmi El-Maleh
    • G09G5/00G06T3/40
    • G06T3/4007
    • This disclosure describes adaptive spatial variant interpolation (SVI) techniques for image upscaling. In various embodiments, the interpolation techniques described in this disclosure may support low complexity upscaling of image while promoting high image quality, including enhanced sharpness, higher contrast and more accurate interpolation. The interpolation techniques may be applied using generalized finite impulse response (FIR) filters. In some embodiments, the interpolation techniques may be content-adaptive to provide more accurate interpolation while suppressing significant artifacts associated with sharp edges. In addition, the interpolation techniques may be readily applicable to upscaling of color imagery and video, e.g., in both YCbCr (luminance, blue chrominance, red chrominance) and RGB (red, green, blue) formats.
    • 本公开描述了用于图像升高的自适应空间变异插值(SVI)技术。 在各种实施例中,本公开中描述的内插技术可以支持图像的低复杂度升高,同时促进高图像质量,包括增强的清晰度,更高的对比度和更精确的插值。 可以使用广义有限脉冲响应(FIR)滤波器来应用插值技术。 在一些实施例中,插值技术可以是内容自适应的,以提供更精确的内插,同时抑制与锐利边缘相关联的显着伪像。 此外,插值技术可以容易地应用于例如YCbCr(亮度,蓝色色度,红色色度)和RGB(红色,绿色,蓝色)格式的彩色图像和视频的放大。
    • 2. 发明申请
    • Adaptive spatial variant interpolation for image upscaling
    • 用于图像放大的自适应空间变异插值
    • US20080036792A1
    • 2008-02-14
    • US11502233
    • 2006-08-09
    • Yi LiangKing-Chung LaiKhaled Helmi El-Maleh
    • Yi LiangKing-Chung LaiKhaled Helmi El-Maleh
    • G09G5/00
    • G06T3/4007
    • This disclosure describes adaptive spatial variant interpolation (SVI) techniques for image upscaling. In various embodiments, the interpolation techniques described in this disclosure may support low complexity upscaling of image while promoting high image quality, including enhanced sharpness, higher contrast and more accurate interpolation. The interpolation techniques may be applied using generalized finite impulse response (FIR) filters. In some embodiments, the interpolation techniques may be content-adaptive to provide more accurate interpolation while suppressing significant artifacts associated with sharp edges. In addition, the interpolation techniques may be readily applicable to upscaling of color imagery and video, e.g., in both YCbCr (luminance, blue chrominance, red chrominance) and RGB (red, green, blue) formats.
    • 本公开描述了用于图像升高的自适应空间变异插值(SVI)技术。 在各种实施例中,本公开中描述的内插技术可以支持图像的低复杂度升高,同时促进高图像质量,包括增强的清晰度,更高的对比度和更精确的插值。 可以使用广义有限脉冲响应(FIR)滤波器来应用插值技术。 在一些实施例中,插值技术可以是内容自适应的,以提供更精确的内插,同时抑制与锐利边缘相关联的显着伪像。 此外,插值技术可以容易地应用于例如YCbCr(亮度,蓝色色度,红色色度)和RGB(红色,绿色,蓝色)格式的彩色图像和视频的放大。
    • 5. 发明授权
    • Adaptive frame skipping techniques for rate controlled video encoding
    • 用于速率控制视频编码的自适应跳帧技术
    • US08514933B2
    • 2013-08-20
    • US11193249
    • 2005-07-29
    • Yi LiangKhaled Helmi El-Maleh
    • Yi LiangKhaled Helmi El-Maleh
    • H04N7/12
    • H04N19/146H04N19/132H04N19/139H04N19/172H04N19/61
    • The disclosure is directed to adaptive frame skipping techniques for rate controlled video encoding of a video sequence. According to the disclosed techniques, an encoder performs frame skipping in an intelligent manner that can improve video quality of the encoded sequence relative to encoding using conventional frame skipping. In particular, the disclosed frame skipping scheme is adaptive and considers motion activity of the video frames in order to identify certain frames that can be skipped without sacrificing significant video quality. The described frame skipping techniques may take into account the tradeoff between spatial and temporal quality of different video frames. In this manner, the techniques can allocate limited resources between the spatial and temporal quality in a way that can improve the visual appearance of a video sequence.
    • 本公开涉及用于视频序列的速率控制视频编码的自适应跳帧技术。 根据所公开的技术,编码器以智能的方式执行帧跳过,其可以相对于使用传统的跳帧的编码来提高编码序列的视频质量。 特别地,所公开的帧跳过方案是自适应的,并且考虑视频帧的运动活动,以便识别可以跳过的某些帧而不牺牲重要的视频质量。 所描述的跳帧技术可以考虑不同视频帧的空间和时间质量之间的折衷。 以这种方式,这些技术可以以可以改善视频序列的视觉外观的方式在空间和时间质量之间分配有限的资源。
    • 8. 发明申请
    • Blending multiple display layers
    • 混合多个显示层
    • US20070285439A1
    • 2007-12-13
    • US11450621
    • 2006-06-08
    • Scott Howard KingSuhail JalilYi Liang
    • Scott Howard KingSuhail JalilYi Liang
    • G09G5/00
    • G09G5/397G09G2340/125G09G2360/122
    • Image processing techniques are described that reduce the amount of bandwidth required to read an image from memory for display. According to the techniques, a processor stores low change rate display layers in a memory such that a processor can read the display layers from the memory using a reduced amount of processing resources. An overlay module blends low change rate display layers into a combined overlay layer. A processor reads the overlay layer from the memory and selectively processes the overlay layer based on processing information for the overlay layer recorded in memory. The processor then blends the overlay layer and a high change rate video display layer to update a single image for display according to a high change rate. In addition, the overlay module updates the overlay layer based on the low change rate display layers according to a low change rate.
    • 描述了图像处理技术,其减少了从显示存储器读取图像所需的带宽量。 根据该技术,处理器将低变化率显示层存储在存储器中,使得处理器可以使用减少量的处理资源从存储器读取显示层。 覆盖模块将低变化率显示层混合到组合覆盖层中。 处理器从存储器读取覆盖层,并且基于记录在存储器中的覆盖层的处理信息选择性地处理覆盖层。 然后,处理器将覆盖层和高变化率视频显示层混合以更新单个图像以根据高变化率显示。 此外,覆盖模块根据低变化率基于低变化率显示层更新覆盖层。