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    • 5. 发明授权
    • Method and system for coding an image sequence corresponding coded signal and storage medium and method and system for decoding such a coded signal
    • 用于编码对应的编码信号和存储介质的图像序列的方法和系统以及用于对这样的编码信号进行解码的方法和系统
    • US06826230B1
    • 2004-11-30
    • US08688917
    • 1996-07-31
    • Philippe Salembier
    • Philippe Salembier
    • H04N712
    • G06T9/20H04N19/17H04N19/20H04N19/46H04N19/537H04N19/543
    • The invention relates to an image sequence coding method comprising a segmentation of each image into partitions made of regions, an estimation and compensation of the motion of these regions between two partitions, and a region contour and texture coding step. The proposed motion estimation step of this method is carried out in a loop circuit (91, 92) in which, after a definition of the mode of transmission of the regions, a particular coded signal is generated for the background regions of the partition, said signal including an order information, indicating a priority between contiguous regions, and an associated updated motion information. The implementation of this method reduces drastically the computational load before the contour coding. The invention also relates to the corresponding decoding method and system.
    • 本发明涉及一种图像序列编码方法,包括将每个图像分割成由区域构成的分区,估计和补偿两个分区之间的这些区域的运动,以及区域轮廓和纹理编码步骤。 该方法的所提出的运动估计步骤在环路电路(91,92)中进行,其中在对区域的传输模式进行定义之后,为分区的背景区域生成特定的编码信号,所述 信号,其包括指示连续区域之间的优先级的顺序信息和相关联的更新的运动信息。 该方法的实现在轮廓编码之前大大降低了计算量。 本发明还涉及相应的解码方法和系统。
    • 7. 发明授权
    • Image decoding method, image decoding apparatus, and data storage medium
    • 图像解码方法,图像解码装置和数据存储介质
    • US06819715B2
    • 2004-11-16
    • US09910906
    • 2001-07-24
    • Takahiro NishiShintarou Nakatani
    • Takahiro NishiShintarou Nakatani
    • H04N712
    • H04N19/61H04N19/895
    • When coded image data which are obtained by coding image data by a coding method including an inter-frame predictive coding process are decoded, even when the decoding is started from an inter-frame predictive coded frame, the display of a decoded image having few disturbances is started, without the display being considerably delayed from the timing of input of coded image data. An image decoding apparatus 100a for decoding coded image data and displaying a decoded image on the basis of decoded image data comprises a frame memory 112a which holds decoded image data 107 of an already processed frame as reference data which are to be used for the decoding process for the inter-frame predictive coded frame, and initializes the storage area of the frame memory 112a at the initiation of the decoding process for the coded image data.
    • 当通过包括帧间预测编码处理的编码方法对图像数据进行编码而获得的编码图像数据被解码时,即使当从帧间预测编码帧开始解码时,显示具有较小干扰的解码图像 开始,而不会从输入编码图像数据的定时显着延迟显示。 用于解码编码图像数据并基于解码图像数据显示解码图像的图像解码装置100a包括:帧存储器112a,其将已处理帧的解码图像数据107保存为用于解码处理的参考数据 对于帧间预测编码帧,并且在编码图像数据的解码处理开始时初始化帧存储器112a的存储区域。
    • 8. 发明授权
    • Video encoding apparatus and video encoding method
    • 视频编码装置和视频编码方法
    • US06819712B2
    • 2004-11-16
    • US09959458
    • 2001-10-26
    • Yuji KawashimaAtsushi Asano
    • Yuji KawashimaAtsushi Asano
    • H04N712
    • H04N21/44004H04N19/60H04N19/61H04N19/70H04N19/91H04N21/23406H04N21/234354H04N21/23611
    • A picture coding apparatus has a signal processor 10 for generating macro-block information by calculating and quantizing the DCTs of a picture signal of a given unit are calculated for each macro-block MB. This information is input to a syntax generator 12 to generate syntax, which is coded by a variable-length coding processor 13. Quantized DCT coefficients of macro information before coding are counted by a count unit 21, and a code size after coding the macro-block information is counted by a count unit 14. A calculation unit 15 calculates an average code length from the accumulated value of the two code sizes. An estimation unit 14 estimates a generation code size after coding given macro-block information input to the syntax generator 12 on the basis of the average code size. A calculation unit 17 calculates a stuffing size by comparing the estimated generation code size with an actually generated generation code size, and the syntax generator 12 generates syntax on the basis of this stuffing size and macro-block MB information.
    • 图像编码装置具有通过对每个宏块MB计算给定单位的图像信号的DCT计算和量化来产生宏块信息的信号处理器10。 该信息被输入到语法生成器12,以生成由可变长度编码处理器13编码的语法。编码之前的宏信息的量化DCT系数由计数单元21进行计数, 块信息由计数单元14计数。计算单元15根据两个码字大小的累计值计算平均码长度。 估计单元14基于平均代码大小来估计输入到语法生成器12的给定宏块信息的编码之后的生成代码大小。 计算单元17通过将估计的生成代码大小与实际生成的代码大小进行比较来计算填充大小,并且语法生成器12基于该填充大小和宏块MB信息来生成语法。