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    • 3. 发明授权
    • Apparatus and methods for down-conversion video de-interlacing
    • 用于下转换视频去隔行的装置和方法
    • US06898243B1
    • 2005-05-24
    • US09439920
    • 1999-11-12
    • José Roberto Alvarez
    • José Roberto Alvarez
    • H04N5/44H04N7/01H04N7/12H04N11/02H04N11/04
    • H04N7/012H04N7/0137
    • A video converter provides for converting an interlaced video datastream to a de-interlaced form suitable for progressive-input coding. Conversion is conducted in accordance with determined motion of image portions within the video datastream. In a preferred MPEG-1 and MPEG-2 IC pre-processor implementation, during motion processing, intra-frame and inter-frame motion analyses are conducted for a current-pixel. The resulting motion determinations are further correlated with derived and/or coding metrics and combined; the combination is also limited, smoothed and a transfer function is applied to produce a mix control. During further video processing, current-pixel data from a current field (“field data”) and corresponding filtered current frame data (“filtered frame data”) are mixed in accordance with the mix control. Resulting output preferably comprises filtered frame data for low or no determined motion, field data for high motion and motion-related mixtures of the two for remaining motion determinations.
    • 视频转换器提供将隔行扫描视频数据流转换成适合逐行输入编码的去隔行形式。 根据视频数据流内的图像部分的确定的运动进行转换。 在优选的MPEG-1和MPEG-2 IC预处理器实现中,在运动处理期间,对当前像素进行帧内和帧间运动分析。 所得到的运动确定进一步与导出和/或编码度量相关联并组合; 该组合也受到限制,平滑,并且应用传递函数来产生混合控制。 在进一步的视频处理期间,根据混合控制混合来自当前场(“场数据”)和对应的滤波的当前帧数据(“滤波帧数据”)的当前像素数据。 所得输出优选地包括用于低或无确定运动的滤波帧数据,用于高运动的场数据和两者的运动相关混合物用于剩余运动确定。
    • 6. 发明授权
    • Adaptive pixel processing
    • 自适应像素处理
    • US07826535B2
    • 2010-11-02
    • US10120622
    • 2002-04-11
    • José Roberto Alvarez
    • José Roberto Alvarez
    • H04N7/12H04N11/02
    • H04N19/439H04N19/117H04N19/136H04N19/176H04N19/42H04N19/527H04N19/61H04N19/82
    • A system (5) processes pixel data representing one of a first image compressed according to a first compression algorithm and a second image compressed according to a second compression algorithm. A pixel analyzer (32) generates first and second selection signals depending on the type of image. A processing module (40) includes first circuits arranged to process the data in response to a first selection signal and second circuits arranged to process the data in response to a second selection signal. A control processor (10) enables the first circuits in response to the first selection signal and enables the second circuits in response to the second selection signal.
    • 系统(5)处理表示根据第一压缩算法压缩的第一图像和根据第二压缩算法压缩的第二图像之一的像素数据。 像素分析器(32)根据图像的类型产生第一和第二选择信号。 处理模块(40)包括布置成响应于第一选择信号处理数据的第一电路和布置成响应于第二选择信号处理数据的第二电路。 控制处理器(10)响应于第一选择信号使得第一电路能够响应于第二选择信号启用第二电路。
    • 7. 发明授权
    • Digital noise reduction techniques
    • 数字降噪技术
    • US07050501B2
    • 2006-05-23
    • US10196477
    • 2002-07-16
    • José Roberto Alvarez
    • José Roberto Alvarez
    • H04N7/12H04N5/14H04N9/64
    • H04N5/21
    • A preprocessor system (10) reduces random noise in video pixels by providing a memory (19) arranged to store first pixels processed during a first time period. A motion detector (300) responds to differences between the first pixels and second pixels processed during a second time period after the first time period to generate corrected motion signals. A first filter (100) generates first filtered values in response to the differences and the corrected motion signals. An impulse detector (244) generates control signals in response to detection of impulses, and an impulse reducer (250) generates second filtered pixel values in response to the first filtered values and the control signals.
    • 预处理器系统(10)通过提供布置成存储在第一时间段期间处理的第一像素的存储器(19)来减少视频像素中的随机噪声。 运动检测器(300)响应在第一时间段之后的第二时间段期间处理的第一像素和第二像素之间的差异,以产生校正的运动信号。 第一滤波器(100)响应于差异和校正的运动信号产生第一滤波值。 脉冲检测器(244)响应于脉冲的检测而产生控制信号,并且脉冲减少器(250)响应于第一滤波值和控制信号产生第二滤波像素值。