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    • 1. 发明授权
    • Adaptive preprocessing method using feature-extracted video maps
    • 使用特征提取的视频地图的自适应预处理方法
    • US08792564B2
    • 2014-07-29
    • US12259649
    • 2008-10-28
    • Jeongnam YounYushin ChoDaisuke Hiranaka
    • Jeongnam YounYushin ChoDaisuke Hiranaka
    • H04N7/26
    • H04N19/00066H04N19/117H04N19/14H04N19/176H04N19/30H04N19/61H04N19/85
    • A method and apparatus for preprocessing a video signal prior to its being encoded. During preprocessing, features are extracted from the video signal into feature planes which are each adaptively filtered in response to estimations of feature activity. After feature extraction the signal which remains is referred to as a “remaining signal”, which is then noise filtered to remove a substantial portion of the noise. The feature planes and remaining signal are recombined into a preprocessed output signal configured for receipt and processing by a video encoder. A video encoder receiving the preprocessed video signal can generate higher quality and/or lower bit rate encoded video than one receiving the original source video. Preprocessing according to the invention is particularly well suited for use with encoders adapted to remove temporal and/or spatial redundancy, such as those implemented according to the MPEG2/4, or AVC/H.264 standards.
    • 一种用于在编码视频信号之前对视频信号进行预处理的方法和装置。 在预处理期间,将特征从视频信号提取到特征平面中,每个特征平面根据特征活动的估计被自适应过滤。 在特征提取之后,剩下的信号被称为“剩余信号”,然后对其进行噪声滤波以去除大部分噪声。 特征平面和剩余信号被重新组合成被配置为由视频编码器接收和处理的预处理输出信号。 接收预处理视频信号的视频编码器可以产生比接收原始源视频的视频编码视频更高质量和/或较低比特率编码视频。 根据本发明的预处理特别适用于适用于去除时间和/或空间冗余的编码器,例如根据MPEG2 / 4或AVC / H.264标准实现的冗余。
    • 2. 发明授权
    • Target bit rate decision method for wavelet-based image compression
    • 基于小波图像压缩的目标比特率决策方法
    • US08203619B2
    • 2012-06-19
    • US12570976
    • 2009-09-30
    • Yushin ChoDaisuke HiranakaJeongnam Youn
    • Yushin ChoDaisuke HiranakaJeongnam Youn
    • H04N5/228H04N7/12H04N11/02H04N11/04
    • H04N19/152H04N19/107H04N19/115H04N19/176H04N19/63
    • A method of deciding a target bit rate for wavelet-based image encoding based on the wavelet coefficients is described. The target bit rate is used for maintaining a high quality image. A minimum target bit rate and a maximum target bit rate are determined. A pseudo code length corresponding to the minimum target bit rate is calculated. The pseudo code length is calculated as a function of the wavelet coefficients. The corresponding pseudo code length is calculated for the maximum target bit rate. A curve between the pseudo code length and target bit rate is derived. Slope of the curve depends on buffer fullness. Using the curve, for a given pseudo code length, an appropriate target bit rate is derived. The derived target bit rate depends on the image content, and computing resources are able to be optimally used to attain similar quality for each image block of an image.
    • 描述了基于小波系数确定基于小波的图像编码的目标比特率的方法。 目标比特率用于维持高质量的图像。 确定最小目标比特率和最大目标比特率。 计算与最小目标比特率对应的伪码长度。 根据小波系数计算伪码长度。 针对最大目标比特率计算相应的伪码长度。 导出伪码长度与目标比特率之间的曲线。 曲线的斜率取决于缓冲区充满度。 使用曲线,对于给定的伪代码长度,导出适当的目标比特率。 导出的目标比特率取决于图像内容,并且计算资源能够被最佳地用于为图像的每个图像块获得相似的质量。
    • 5. 发明申请
    • TARGET BIT RATE DECISION METHOD FOR WAVELET-BASED IMAGE COMPRESSION
    • 基于水平图像压缩的目标位速率决策方法
    • US20110074967A1
    • 2011-03-31
    • US12570976
    • 2009-09-30
    • Yushin ChoDaisuke HiranakaJeongnam Youn
    • Yushin ChoDaisuke HiranakaJeongnam Youn
    • G06K9/36H04N5/228
    • H04N19/152H04N19/107H04N19/115H04N19/176H04N19/63
    • A method of deciding a target bit rate for wavelet-based image encoding based on the wavelet coefficients is described. The target bit rate is used for maintaining a high quality image. A minimum target bit rate and a maximum target bit rate are determined. A pseudo code length corresponding to the minimum target bit rate is calculated. The pseudo code length is calculated as a function of the wavelet coefficients. The corresponding pseudo code length is calculated for the maximum target bit rate. A curve between the pseudo code length and target bit rate is derived. Slope of the curve depends on buffer fullness. Using the curve, for a given pseudo code length, an appropriate target bit rate is derived. The derived target bit rate depends on the image content, and computing resources are able to be optimally used to attain similar quality for each image block of an image.
    • 描述了基于小波系数来确定基于小波的图像编码的目标比特率的方法。 目标比特率用于维持高质量的图像。 确定最小目标比特率和最大目标比特率。 计算与最小目标比特率对应的伪码长度。 根据小波系数计算伪码长度。 针对最大目标比特率计算相应的伪码长度。 导出伪码长度与目标比特率之间的曲线。 曲线的斜率取决于缓冲区充满度。 使用曲线,对于给定的伪代码长度,导出适当的目标比特率。 导出的目标比特率取决于图像内容,并且计算资源能够被最佳地用于为图像的每个图像块获得相似的质量。
    • 6. 发明申请
    • ADAPTIVE PREPROCESSING METHOD USING FEATURE-EXTRACTED VIDEO MAPS
    • 使用特征提取视频的自适应预处理方法
    • US20100104027A1
    • 2010-04-29
    • US12259649
    • 2008-10-28
    • Jeongnam YounYushin ChoDaisuke Hiranaka
    • Jeongnam YounYushin ChoDaisuke Hiranaka
    • H04N7/26
    • H04N19/00066H04N19/117H04N19/14H04N19/176H04N19/30H04N19/61H04N19/85
    • A method and apparatus for preprocessing a video signal prior to its being encoded. During preprocessing, features are extracted from the video signal into feature planes which are each adaptively filtered in response to estimations of feature activity. After feature extraction the signal which remains is referred to as a “remaining signal”, which is then noise filtered to remove a substantial portion of the noise. The feature planes and remaining signal are recombined into a preprocessed output signal configured for receipt and processing by a video encoder. A video encoder receiving the preprocessed video signal can generate higher quality and/or lower bit rate encoded video than one receiving the original source video. Preprocessing according to the invention is particularly well suited for use with encoders adapted to remove temporal and/or spatial redundancy, such as those implemented according to the MPEG2/4, or AVC/H.264 standards.
    • 一种用于在编码视频信号之前对视频信号进行预处理的方法和装置。 在预处理期间,将特征从视频信号提取到特征平面中,每个特征平面根据特征活动的估计被自适应过滤。 在特征提取之后,剩下的信号被称为“剩余信号”,然后对其进行噪声滤波以去除大部分噪声。 特征平面和剩余信号被重新组合成被配置为由视频编码器接收和处理的预处理输出信号。 接收预处理视频信号的视频编码器可以产生比接收原始源视频的视频编码视频更高质量和/或较低比特率编码视频。 根据本发明的预处理特别适合于适用于去除时间和/或空间冗余的编码器,诸如根据MPEG2 / 4或AVC / H.264标准实现的冗余。