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    • 2. 发明申请
    • A METHOD AND APPARATUS FOR FAST CHANNEL CHANGE USING A SECONDARY CHANNEL VIDEO STREAM
    • 使用二次通道视频流进行快速通道更改的方法和装置
    • WO2010014210A1
    • 2010-02-04
    • PCT/US2009/004359
    • 2009-07-28
    • THOMSON LICENSINGLI, John, QiangLU, XiupingWU, Zhenyu
    • LI, John, QiangLU, XiupingWU, Zhenyu
    • H04N5/45H04N5/50H04N7/173
    • H04N5/50H04N5/45H04N21/23439H04N21/4316H04N21/4384
    • A method and apparatus for fast channel change when changing the channel from a channel being viewed full screen as a main picture to a channel being viewed in a secondary channel program display window (e.g., a picture-in-picture (PIP) window). In one implementation, during the channel change, a secondary video stream (135) for a secondary channel program is up-sampled and displayed full screen while receiving the corresponding regular video stream (133) for the video program, of which program contents are identical to those of the secondary video stream. The program contents of the up-sampled secondary video stream is then be replaced seamlessly with those of the corresponding regular video stream (133) at the time when an instantaneous decode refresh (IDR) frame of the corresponding regular video stream (133) is received. In another implementation, the last GOP packets of the corresponding regular video stream (133), corresponding to a secondary video stream (135) being viewed in the secondary channel program display window, are buffered without being decoded. Upon a request for the channel change, the buffered GOP packets are decoded and displayed immediately while the decoder starts receiving the following frames in the corresponding regular video stream (133).
    • 一种用于在从作为主图像全屏观看的频道改变频道到在次频道节目显示窗口(例如,画中画(PIP)窗口)中观看的频道的频道改变时的方法和装置。 在一个实现中,在频道改变期间,用于辅助频道节目的辅助视频流(135)被上采样并全屏显示,同时接收用于视频节目的对应的常规视频流(133),其中节目内容是相同的 到次要视频流的那些。 然后,当接收到对应的常规视频流(133)的瞬时解码刷新(IDR)帧时,上采样次视频流的节目内容与相应的常规视频流(133)的节目内容无缝地替换 。 在另一个实施方式中,在辅助频道节目显示窗口中观看的对应于次要视频流(135)的相应常规视频流(133)的最后GOP分组被缓存,而不被解码。 当要求频道改变时,缓冲的GOP分组被解码并立即显示,同时解码器开始在相应的常规视频流(133)中接收下列帧。
    • 3. 发明申请
    • METHODS FOR ERROR CONCEALMENT DUE TO ENHANCEMENT LAYER PACKET LOSS IN SCALABLE VIDEO CODING (SVC) DECODING
    • 由于可扩展视频编码(SVC)解码中的增强层分组丢失导致的错误隐藏方法
    • WO2010011295A1
    • 2010-01-28
    • PCT/US2009/004233
    • 2009-07-21
    • THOMSON LICENSINGLI, John, QiangWU, ZhenyuLU, Xiuping
    • LI, John, QiangWU, ZhenyuLU, Xiuping
    • H04N7/12
    • H04N19/00321H04N19/177H04N19/187H04N19/33H04N19/59H04N19/895
    • Methods for concealing Scalable Video Coding (SVC) decoding errors. Lost pictures in the target layer are replaced with up-sampled pictures from a lower layer, such as the base layer. In multiloop decoding applications, lost pictures in the target layer are replaced with corresponding up-sampled pictures from the lower layer. Subsequent target layer pictures in the same Group of Pictures (GOP) are either replaced with corresponding upsampled pictures from the lower layer, or they are decoded with up-sampled pictures from the lower layer used as reference pictures. For single-loop decoding, the bit stream of each layer is buffered, for each GOP, and inspected for errors. If an error is detected in the target layer, the pictures of the highest level layer without an error are decoded and up-sampled and used as the output pictures for the current GOP.
    • 隐藏可缩放视频编码(SVC)解码错误的方法。 目标层中丢失的图像将被从较低层(例如基础层)的上采样图像所取代。 在多循环解码应用中,目标层中的丢失图像将被来自下层的相应的上采样图像所取代。 相同图像组(GOP)中的后续目标图像图像将被来自较低层的相应的上采样图像替换,或者用来自用作参考图像的较低层的上采样图像进行解码。 对于单循环解码,每个层的比特流对于每个GOP进行缓冲,并检查错误。 如果在目标层中检测到错误,则无错误的最高级别图层的图像被解码并上采样并用作当前GOP的输出图像。
    • 5. 发明申请
    • METHOD AND APPARATUS FAST CHANNEL CHANGE USING A SCALABLE VIDEDO CODING (SVC) STREAM
    • 使用可扩展视频编码(SVC)流的方法和设备快速通道更改
    • WO2010014211A1
    • 2010-02-04
    • PCT/US2009/004360
    • 2009-07-28
    • THOMSON LICENSINGLU, John, QiangLU, XiupingWU, Zhenyu
    • LU, John, QiangLU, XiupingWU, Zhenyu
    • H04N7/24H04N5/44H04N5/45H04N5/50
    • H04N21/44016H04N5/4401H04N5/45H04N5/50H04N21/23424H04N21/234327H04N21/4316H04N21/4384H04N21/4621
    • There are provided methods and apparatus for fast channel change when changing the channel from a channel being viewed full screen to a channel being viewed in a secondary display window (e.g., picture-in-picture (PIP) window). In one implementation, the base layer stream of the SVC encoded stream is used as the secondary stream for the secondary display and the corresponding enhancement layer stream is used as the corresponding regular stream. Upon channel change request, the decoded base layer picture of the SVC encoded stream is up-sampled, and the up-sampled base layer picture is displayed full screen while receiving the corresponding SVC enhancement layer stream. Then, the up-sampled base layer picture is replaced by the decoded enhancement layer picture upon confirmation of successful receiving and decoding of an enhancement layer instantaneous decode refresh (IDR) frame. In another implementation, the last GOP of enhancement layer stream corresponding to a base layer stream being viewed in the secondary display window is buffered without decoding, and upon a channel change request to the secondary video display window channel, the buffered packets are decoded and displayed immediately while the decoder continues to receive and decode all frames in the corresponding base and enhancement layer streams.
    • 提供了在从全屏观看的频道到在辅助显示窗口(例如,画中画(PIP)窗口)中正在观看的频道改变频道时提供用于快速频道改变的方法和装置。 在一个实施方式中,使用SVC编码流的基本层流作为辅助显示器的辅助流,并将对应的增强层流用作相应的常规流。 在通道改变请求时,SVC编码流的经解码的基本层图像被上采样,并且上采样的基层图像全屏显示,同时接收相应的SVC增强层流。 然后,在确认增强层瞬时解码刷新(IDR)帧的成功接收和解码之后,上采样的基层图像被解码的增强层图像所替代。 在另一实现中,在辅助显示窗口中正在观看的对应于基本层流的增强层流的最后GOP被缓冲而不进行解码,并且在对次要视频显示窗口信道的信道改变请求时,缓冲的分组被解码和显示 立即当解码器继续接收和解码相应的基本和增强层流中的所有帧时。
    • 6. 发明申请
    • PROTOCOL BOOSTER FOR SCTP IN MUTICAST NETWORKS
    • 静音网络中的SCTP协议增强器
    • WO2011071474A1
    • 2011-06-16
    • PCT/US2009/006490
    • 2009-12-10
    • THOMSON LICENSINGWU, ZhenyuLI, Dekai
    • WU, ZhenyuLI, Dekai
    • H04L1/00
    • H04L1/1607H04L12/1836H04L12/184H04L12/1854H04L12/189H04L29/08045H04L65/1016H04L65/4076H04L69/326H04L2001/0093
    • A traffic optimizer facilitates communication of data packets using a unicast protocol between a server and at least one of a plurality of clients through a multicast network. The traffic optimizer includes a communication processor and a packet processor. The communication processor receives both data including association data and the data packets using the unicast protocol from the server. The association data includes IP addresses of the server and IP addresses of at least one of a plurality of clients available for communication. The packet processor processes the data packets to optimize data transfer in response to an analysis of the data packets, and forwards the processed data packets to at least one of the plurality of clients at respective ones of the received IP addresses through a multicast network using the unicast protocol.
    • 流量优化器促进通过多播网络在服务器与多个客户端中的至少一个之间使用单播协议的数据分组的通信。 流量优化器包括通信处理器和分组处理器。 通信处理器使用来自服务器的单播协议接收包括关联数据和数据分组的数据。 关联数据包括服务器的IP地址和可用于通信的多个客户端中的至少一个的IP地址。 分组处理器响应于数据分组的分析处理数据分组以优化数据传输,并且通过多播网络将处理后的数据分组转发到接收到的各个IP地址中的至少一个客户端,使用 单播协议
    • 9. 发明申请
    • A METHOD AND APPARATUS FOR STREAMING SCALABLE MULTIMEDIA DATA STREAMS
    • 用于流动可扩展多媒体数据流的方法和装置
    • WO2009058118A1
    • 2009-05-07
    • PCT/US2007/023079
    • 2007-11-01
    • THOMSON LICENSINGWU, ZhenyuLIU, ZhengyeSTEIN, Alan, Jay
    • WU, ZhenyuLIU, ZhengyeSTEIN, Alan, Jay
    • H04L1/18H04L1/00
    • H04L1/1887H04L1/1812H04L2001/0093H04N19/31H04N19/61H04N19/89H04N21/234327H04N21/2662H04N21/4621H04N21/6375H04N21/6405H04N21/6583
    • A method and apparatus are described including receiving a coded packet of content associated with a layer, receiving feedback information regarding channel conditions and applying hybrid automatic repeat request to deliver the packet based on said feedback information. The method and apparatus wherein applying hybrid automatic repeat request layer-wise further includes determining if a resource is exhausted, scheduling delivery of layered coded content packets for a layer, if the resource has not been exhausted, determining if all layered coded content packets for the layer have been transmitted, proceeding to the first determining step, if all layered coded content packets for a layer have not been transmitted, determining if an acknowledgement message has been received from a user device, determining if the resource is exhausted, if no acknowledgement has not been received and scheduling delivery of layered coded forward error correction packets, if the resource has not been exhausted.
    • 描述了一种方法和装置,包括接收与层相关联的内容的编码分组,接收关于信道条件的反馈信息,并且基于所述反馈信息应用混合自动重传请求以递送分组。 分层应用混合自动重复请求的方法和装置还包括确定资源是否耗尽,如果资源尚未用尽,则调度分层编码内容分组的传送,确定是否所有分层编码内容分组为 如果没有发送用于一层的所有分层编码内容分组,则确定是否已经从用户设备接收到确认消息,确定资源是否已用尽,如果没有确认已经被发送,则进行到第一确定步骤 如果资源尚未用尽,则未被接收并且分配编码的前向纠错分组的调度传递。