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    • 1. 发明申请
    • Bi-directional predicting method for video coding/decoding
    • 视频编码/解码双向预测方法
    • US20070110156A1
    • 2007-05-17
    • US10571659
    • 2004-07-02
    • Xiangyang JiWen GaoDebin ZhaoYan LuSiwei MaHonggang Qi
    • Xiangyang JiWen GaoDebin ZhaoYan LuSiwei MaHonggang Qi
    • H04N11/04H04N11/02
    • H04N19/577H04N19/513H04N19/58H04N19/61
    • The invention discloses a bi-directional prediction method for video coding/decoding. When bi-directional prediction coding at the coding end, firstly the given forward candidate motion vector of the current image block is obtained for every image block of the current B-frame; the backward candidate motion vector is obtained through calculation, and the candidate bi-directional prediction reference block is obtained through bi-directional prediction method; the match is computed within the given searching scope and/or the given matching threshold; finally the optimal matching block is selected to determine the final forward motion vector, and the backward motion vector and the block residual. The present invention achieves the object of bi-directional prediction by coding a single motion vector, furthermore, it will not enhance the complexity of searching for a matching block at the coding end, and may save amount of coding the motion vector and represent the motion of the objects in video more actually. The present invention realizes a new prediction coding type by combining the forward prediction coding with the backward.
    • 本发明公开了一种用于视频编码/解码的双向预测方法。 在编码结束的双向预测编码时,首先为当前B帧的每个图像块获得当前图像块的给定正向候选运动矢量; 通过计算获得后向候选运动矢量,通过双向预测方法获得候选双向预测参考块; 在给定的搜索范围和/或给定的匹配阈值内计算匹配; 最后选择最优匹配块来确定最终的前向运动矢量,反向运动矢量和块残差。 本发明通过对单个运动矢量进行编码来实现双向预测的目的,此外,它不会增强在编码端搜索匹配块的复杂度,并且可以节省编码运动矢量的量并表示运动 视频中的对象更实际。 本发明通过将前向预测编码与后向组合来实现新的预测编码类型。
    • 2. 发明授权
    • Bi-directional predicting method for video coding/decoding
    • 视频编码/解码双向预测方法
    • US08005144B2
    • 2011-08-23
    • US10571659
    • 2004-07-02
    • Xiangyang JiWen GaoDebin ZhaoYan LuSiwei MaHonggang Qi
    • Xiangyang JiWen GaoDebin ZhaoYan LuSiwei MaHonggang Qi
    • H04N7/12H04N11/02H04N11/04
    • H04N19/577H04N19/513H04N19/58H04N19/61
    • The invention discloses a bi-directional prediction method for video coding/decoding. When bi-directional prediction coding at the coding end, firstly the given forward candidate motion vector of the current image block is obtained for every image block of the current B-frame; the backward candidate motion vector is obtained through calculation, and the candidate bi-directional prediction reference block is obtained through bi-directional prediction method; the match is computed within the given searching scope and/or the given matching threshold; finally the optimal matching block is selected to determine the final forward motion vector, and the backward motion vector and the block residual. The present invention achieves the object of bi-directional prediction by coding a single motion vector, furthermore, it will not enhance the complexity of searching for a matching block at the coding end, and may save amount of coding the motion vector and represent the motion of the objects in video more actually. The present invention realizes a new prediction coding type by combining the forward prediction coding with the backward.
    • 本发明公开了一种用于视频编码/解码的双向预测方法。 在编码结束的双向预测编码时,首先为当前B帧的每个图像块获得当前图像块的给定正向候选运动矢量; 通过计算获得后向候选运动矢量,通过双向预测方法获得候选双向预测参考块; 在给定的搜索范围和/或给定的匹配阈值内计算匹配; 最后选择最优匹配块来确定最终的前向运动矢量,反向运动矢量和块残差。 本发明通过对单个运动矢量进行编码来实现双向预测的目的,此外,它不会增强在编码端搜索匹配块的复杂度,并且可以节省编码运动矢量的量并表示运动 视频中的对象更实际。 本发明通过将前向预测编码与后向组合来实现新的预测编码类型。
    • 5. 发明授权
    • Method for obtaining motion vector and image reference block in a code mode of fixed reference frame a number
    • 用于在固定参考帧的码模式中获得运动矢量和图像参考块的方法
    • US08116375B2
    • 2012-02-14
    • US10584762
    • 2004-07-19
    • Wen GaoXiangyang JiSiwei MaDebin ZhaoYan Lu
    • Wen GaoXiangyang JiSiwei MaDebin ZhaoYan Lu
    • H04N7/12
    • H04N19/577H04N19/51H04N19/513H04N19/61
    • A method for obtaining an image reference block in a code mode of fixed reference frame number includes the steps of: performing motion estimation for each block of a current B frame and obtaining a motion vector MV of a corresponding block of a backward reference frame; discriminating whether the motion vector is beyond a maximum forward reference frame which is possibly pointed by the B frame, if not, then calculating the forward and backward motion vectors in a normal way; if yes, then using the motion vector of the forward reference frame that the B frame can obtain in the same direction to replace the motion vector of the corresponding block in the backward reference, and calculating the forward and the backward motion vectors of the B frame; finally, two image blocks pointed by the final obtained forward and backward motion vectors as the image reference blocks corresponding to the macro block. The present invention solves the possibly appeared problem of un-matching motion vectors, and can guarantee the coding efficiency to the largest extent.
    • 用于以固定参考帧号码的码模式获得图像参考块的方法包括以下步骤:对当前B帧的每个块执行运动估计,并获得后向参考帧的对应块的运动矢量MV; 鉴别运动矢量是否超出可能由B帧指向的最大前向参考帧,如果不是,则以正常方式计算前向和后向运动矢量; 如果是,则使用B帧可以在相同方向上获得的前向参考帧的运动矢量来替换后向参考中的相应块的运动矢量,并且计算B帧的前向和后向运动矢量 ; 最后,由最终获得的前向和后向运动矢量指向的两个图像块作为与宏块对应的图像参考块。 本发明解决了可能出现的不匹配运动矢量的问题,可以最大限度地保证编码效率。
    • 6. 发明申请
    • Method for obtaining image reference block in a code mode of fixed reference frame number
    • 用于以固定参考帧编号的码模式获取图像参考块的方法
    • US20070116123A1
    • 2007-05-24
    • US10584762
    • 2004-07-19
    • Wen GaoXiangyang JiSiwei MaDebin ZhaoYan lu
    • Wen GaoXiangyang JiSiwei MaDebin ZhaoYan lu
    • H04N11/04H04N11/02
    • H04N19/577H04N19/51H04N19/513H04N19/61
    • The present invention discloses a method for obtaining image reference block in a code mode of fixed reference frame number, comprising the steps of: performing motion estimation for each block of a current B frame and obtaining a motion vector MV of a corresponding block of a backward reference frame; discriminating whether the motion vector is beyond a maximum forward reference frame which is possibly pointed by the B frame, if not, then calculating the forward and backward motion vectors in a normal way; if yes, then using the motion vector of the forward reference frame that the B frame can obtain in the same direction to replace the motion vector of the corresponding block in the backward reference, and calculating the forward and the backward motion vectors of the B frame; finally, two image blocks pointed by the final obtained forward and backward motion vectors as the image reference blocks corresponding to the macro block. The present invention solves the possibly appeared problem of un-matching motion vectors, and can guarantee the coding efficiency to the largest extent.
    • 本发明公开了一种用于以固定参考帧号码的码模式获取图像参考块的方法,包括以下步骤:对当前B帧的每个块执行运动估计,并获得后向对应块的运动矢量MV 参考范围; 鉴别运动矢量是否超出可能由B帧指向的最大前向参考帧,如果不是,则以正常方式计算前向和后向运动矢量; 如果是,则使用B帧可以在相同方向上获得的前向参考帧的运动矢量来替换后向参考中的相应块的运动矢量,并且计算B帧的前向和后向运动矢量 ; 最后,由最终获得的前向和后向运动矢量指向的两个图像块作为与宏块对应的图像参考块。 本发明解决了可能出现的不匹配运动矢量的问题,可以最大限度地保证编码效率。
    • 7. 发明授权
    • Encoding method for skipped macroblocks in video image
    • 视频图像中跳过的宏块的编码方法
    • US08306124B2
    • 2012-11-06
    • US10584844
    • 2004-07-08
    • Wen GaoJunhao ZhengSiwei MaXiangyang JiPeng ZhangYan Lu
    • Wen GaoJunhao ZhengSiwei MaXiangyang JiPeng ZhangYan Lu
    • H04N7/12
    • H04N19/132H04N19/176H04N19/51H04N19/61H04N19/70
    • An encoding method for skipped macroblocks in a video image includes the steps of: adding one indication bit into a picture header for indicating a coding mode for skipped macroblocks in a current image; selecting the coding mode for a macroblock type in the current image according to the number of skipped macroblocks, if it is a run_length coding, then setting the indication bit of the picture header as a status indicating a run_length coding, and encoding the macroblock type in the image by the run_length coding mode; if it is a joint coding, then setting the indication bit of the picture header as status indicating a joint coding and encoding the macroblock type in the image by the joint coding mode of the number of skipped macroblocks and the macroblock type; finally, encoding other data in the current macroblock and writing data into a code stream.
    • 视频图像中的跳过宏块的编码方法包括以下步骤:将一个指示位添加到用于指示当前图像中的跳过宏块的编码模式的图像头中; 根据跳过的宏块的数量,选择当前图像中的宏块类型的编码模式,如果是长度编码,则将图像头的指示位设置为指示运行长度编码的状态,并将宏块类型编码 图像由run_length编码模式; 如果是联合编码,则通过跳过的宏块的数量和宏块类型的联合编码模式将图像头的指示位设置为指示图像中的宏块类型的联合编码和编码的状态; 最后,编码当前宏块中的其他数据并将数据写入代码流。
    • 8. 发明申请
    • Encoding Method for Skipped Macroblocks in Video Image
    • 视频图像中跳过的宏块的编码方法
    • US20070217500A1
    • 2007-09-20
    • US10584844
    • 2004-07-08
    • Wen GaoJunhao ZhengSiwei MaXiangyang JiPeng ZhangYan lu
    • Wen GaoJunhao ZhengSiwei MaXiangyang JiPeng ZhangYan lu
    • H04N7/32
    • H04N19/132H04N19/176H04N19/51H04N19/61H04N19/70
    • The present invention provides an encoding method for skipped macroblocks in a video image comprising the steps of: adding one indication bit into a picture header for indicating a coding mode for skipped macroblocks in a current image; selecting the coding mode for a macroblock type in the current image according to the number of skipped macroblocks, if it is a run_length coding, then setting the indication bit of the picture header as a status indicating a run_length coding, and encoding the macroblock type in the image by the run_length coding mode; if it is a joint coding of the number of skipped macroblocks and the macroblock type, then setting the indication bit of the picture header as status indicating a joint coding and encoding the macroblock type in the image by the joint coding mode of the number of skipped macroblocks and the macroblock type; finally, encoding other data in the current macroblock and writing data into a code stream. The present invention selects the coding mode for skipped macroblocks in video image adaptively, which improves the image encoding efficiency, reduces the cost for transmission and storage, therefore it is a simple and practical technical solution. The present invention can be used validly in both frame encoding and field encoding.
    • 本发明提供一种视频图像中的跳过宏块的编码方法,包括以下步骤:将一个指示位添加到用于指示当前图像中跳过的宏块的编码模式的图像头中; 根据跳过的宏块的数量,选择当前图像中的宏块类型的编码模式,如果是长度编码,则将图像头的指示位设置为指示运行长度编码的状态,并将宏块类型编码 图像由run_length编码模式; 如果是跳过的宏块的数量和宏块类型的联合编码,则通过跳过的数量的联合编码模式将图像头的指示位设置为指示联合编码并且将宏块类型编码在图像中的状态 宏块和宏块类型; 最后,编码当前宏块中的其他数据并将数据写入代码流。 本发明自适应地选择视频图像中的跳过宏块的编码模式,提高了图像编码效率,降低了传输和存储成本,因此是一种简单实用的技术方案。 本发明可以在帧编码和场编码两者中有效地使用。
    • 9. 发明授权
    • Resource scheduling apparatus and method, program requesting method and system
    • 资源调度装置和方法,程序请求方法和系统
    • US08832759B2
    • 2014-09-09
    • US12893305
    • 2010-09-29
    • Xiangyang JiYongxiong LiaoWei LuoZengli Jia
    • Xiangyang JiYongxiong LiaoWei LuoZengli Jia
    • H04N7/173H04N21/472H04N21/238H04N7/16H04N21/2385
    • H04N7/165H04N21/23805H04N21/2385H04N21/47202
    • A resource scheduling apparatus, a resource scheduling method, a program requesting method, a program requesting system, and a Set Top Box (STB) are provided. The resource scheduling method includes: distributing bandwidth greater than an inherent code rate of a program respectively requested by a user to a Video On Demand (VOD) program of the user within available bandwidth of a frequency point according to a received VOD user request; and reducing the bandwidth distributed to at least one VOD program to which bandwidth has been distributed according to the received VOD user request for currently requesting the program when the available bandwidth of the frequency point is smaller than an inherent code rate of a currently requested program, so that the available bandwidth of the frequency point is greater than or equal to the inherent code rate of the currently requested program. Thus, a transmission speed of the program and a utilization ratio of the bandwidth are increased.
    • 提供资源调度装置,资源调度方法,程序请求方法,程序请求系统和机顶盒(STB)。 所述资源调度方法包括:根据所接收的VOD用户请求,将频宽分配的带宽分配给用户分别由用户请求的节目的固有码率分配给频点的可用带宽内的用户的视频点播(VOD)节目; 并且当所述频点的可用带宽小于当前所请求节目的固有码率时,根据当前请求所述节目的所接收的VOD用户请求,减小分配给至少一个VOD节目的带宽, 使得频率点的可用带宽大于或等于当前请求的程序的固有码率。 因此,节目的传输速度和带宽的利用率增加。
    • 10. 发明授权
    • Embedded base layer codec for 3D sub-band coding
    • 用于3D子带编码的嵌入式基层编解码器
    • US08340177B2
    • 2012-12-25
    • US11126650
    • 2005-05-10
    • Xiangyang JiJizheng XuFeng Wu
    • Xiangyang JiJizheng XuFeng Wu
    • H04N7/12H04N11/02
    • H04N19/61H04N19/13H04N19/615H04N19/619H04N19/62H04N19/63
    • Techniques and tools are described for scalable video coding and decoding. For example, a 3D sub-band video encoder includes an embedded base layer codec as well as temporal sub-band transforms and spatial sub-band transforms. The placement of the base layer codec among the sub-band transforms and the role of the base layer codec in scalable video coding vary depending on implementation. In general, the base layer codec provides efficient compression at low bit rates and produces a base layer compressed video bit stream compatible with existing decoders. At the same time, the 3D sub-band video encoder provides spatial and temporal scalability options at higher bit rates, refining the base layer video. A corresponding 3D sub-band video decoder includes an embedded base layer decoder.
    • 描述了可扩展视频编码和解码的技术和工具。 例如,3D子带视频编码器包括嵌入式基层编解码器以及时间子带变换和空间子带变换。 基带编解码器在子带变换中的布置以及基础层编解码器在可伸缩视频编码中的作用根据实现而有所不同。 通常,基层编解码器以低比特率提供有效的压缩,并产生与现有解码器兼容的基本层压缩视频比特流。 同时,3D子带视频编码器以更高的比特率提供空间和时间的可扩展性选项,从而改善基本层视频。 相应的3D子带视频解码器包括嵌入式基本层解码器。