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    • 1. 发明申请
    • PROTOCOL BOOSTER FOR SCTP IN MULTICAST NETWORKS
    • 多媒体网络中的SCTP协议增强器
    • US20120243459A1
    • 2012-09-27
    • US13514064
    • 2009-12-10
    • Zhenyu WuDekai Li
    • Zhenyu WuDekai Li
    • H04L12/56H04W4/06
    • 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.
    • 流量优化器便于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来进行数据包的通信。 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, 单播协议
    • 2. 发明授权
    • Protocol booster for SCTP in multicast networks
    • 多播网络中SCTP的协议加速器
    • US08976787B2
    • 2015-03-10
    • US13514064
    • 2009-12-10
    • Zhenyu WuDekai Li
    • Zhenyu WuDekai Li
    • H04L12/18H04L12/28H04L1/16H04L1/00H04L29/08H04L29/06
    • 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.
    • 流量优化器便于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来进行数据包的通信。 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 单播协议
    • 5. 发明申请
    • MERGING ENCODED BITSTREAMS
    • 合并编码的BITSTREAMS
    • US20130010863A1
    • 2013-01-10
    • US13520197
    • 2010-12-10
    • Zhenyu WuFerran ValldoseraAdarsh Golikeri
    • Zhenyu WuFerran ValldoseraAdarsh Golikeri
    • H04N7/26H04N7/32
    • H04N21/8451H04N19/30H04N19/40H04N19/513H04N19/70
    • At least one implementation provides a transcoder for merging two AVC (including, for example, the SVC annex) bitstreams. Various implementations provide advantages such as, for example, avoiding full decoding of at least one bitstream and/or avoiding motion compensation during the coding of an enhancement layer block. One particular implementation includes accessing a first and a second AVC encoding of a sequence of data. The second AVC encoding differs from the first AVC encoding in quality. The particular implementation further includes merging the first AVC encoding and the second AVC encoding into a third AVC encoding that uses the SVC extension of AVC. The merging is performed such that the first and second AVC encodings occupy different layers, and the first layer is a reference layer for the second layer.
    • 至少一个实现提供了用于合并两个AVC(包括例如SVC附件)比特流的代码转换器。 各种实施方式提供了诸如例如在增强层块的编码期间避免至少一个比特流的完全解码和/或避免运动补偿的优点。 一个特定实现包括访问数据序列的第一和第二AVC编码。 第二AVC编码与第一AVC编码的质量不同。 具体实现还包括将第一AVC编码和第二AVC编码合并为使用AVC的SVC扩展的第三AVC编码。 执行合并使得第一和第二AVC编码占据不同的层,并且第一层是第二层的参考层。
    • 6. 发明申请
    • Rate Control for Cloud Transcoding
    • 云转码的速率控制
    • US20120281748A1
    • 2012-11-08
    • US13462435
    • 2012-05-02
    • Zhang PengZhenyu WuLou Shuai
    • Zhang PengZhenyu WuLou Shuai
    • H04N7/26
    • H04N19/40H04N19/124H04N19/149H04N19/174
    • A method implemented by an apparatus for video transcoding comprising receiving video data intended for encoding, splitting the video data into a plurality of segments of appropriate sizes to enable distributed encoding by a plurality of video transcoders, obtaining rate control information for each of the segments by calculating related video statistics for each of the segments with subsequent segments in a determined time period, calculating an assigned bit rate to each of the segments based on the obtained rate control information, embedding the assigned bit rate to each of the segments, and forwarding the segments to a plurality of corresponding video transcoders, wherein the embedded assigned bit rate in each of the segments is extracted by the corresponding video transcoders to perform video rate control and enables the video transcoders to improve video quality and reduce rate fluctuation when encoding the segments.
    • 一种由视频代码转换装置实现的方法,包括接收用于编码的视频数据,将视频数据分割成多个适当大小的片段,以便能够由多个视频代码转换器进行分布式编码,通过以下步骤获得每个片段的速率控制信息: 在确定的时间段内对具有后续段的每个段的相关视频统计进行计算,基于所获得的速率控制信息计算分配的比特率到每个段,并将分配的比特率嵌入到每个段,并将 分段到多个相应的视频代码转换器,其中每个段中的嵌入分配的比特率由相应的视频代码转换器提取,以执行视频速率控制,并且使得视频编码转换器能够在编码段时提高视频质量并降低速率波动。