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    • 2. 发明申请
    • METHOD AND APPARATUS FOR MONITORING QUALITY OF SERVICE OF NETWORK
    • 监测网络质量的方法和装置
    • US20130021937A1
    • 2013-01-24
    • US13634851
    • 2010-03-24
    • Xianlei WangRenlei ChenNing Liao
    • Xianlei WangRenlei ChenNing Liao
    • H04L12/26H04L12/56
    • H04L65/4076H04L41/5009H04L65/80H04L67/322
    • When capturing packets at the application level for the purpose of QoS monitoring, a QoS monitor needs to be bound to the same IP address and port as those of a media player. However, due to the unicast duplicate binding problem, a unicast packet captured by the QoS monitor will not be received by the media player, which means the QoS monitor have affected the operation of the media player. The present invention provides a solution to make the QoS monitor, upon the receipt of a unicast packet, forward the packet to the socket of the media player. In order to guarantee that the forwarded packet can be received by the socket of the media player, the QoS monitor needs to keep the port unchanged and replace the destination IP address with the local host address (127.0.0.1). According to the invention, the QoS monitor can sniff the media player without interference to the normal operation of the media player.
    • 为了进行QoS监控,在应用层捕获数据包时,需要将QoS监视器绑定到与媒体播放器相同的IP地址和端口。 然而,由于单播重复绑定问题,由媒体播放器不会接收到由QoS监视器捕获的单播数据包,这意味着QoS监视器影响了媒体播放器的操作。 本发明提供了一种解决方案,用于在接收到单播数据包时使QoS监视器将数据包转发到媒体播放器的套接字。 为了保证转发报文可以由媒体播放器的套接字接收,QoS监控器需要保持端口不变,并用本地主机地址(127.0.0.1)替换目的IP地址。 根据本发明,QoS监视器可以嗅探媒体播放器而不干扰媒体播放器的正常操作。
    • 3. 发明授权
    • Method and apparatus for monitoring quality of service of network
    • 监测网络服务质量的方法和装置
    • US09276975B2
    • 2016-03-01
    • US13634851
    • 2010-03-24
    • Xianlei WangRenlei ChenNing Liao
    • Xianlei WangRenlei ChenNing Liao
    • H04L12/26H04L29/06H04L12/24
    • H04L65/4076H04L41/5009H04L65/80H04L67/322
    • When capturing packets at the application level for the purpose of QoS monitoring, a QoS monitor needs to be bound to the same IP address and port as those of a media player. However, due to the unicast duplicate binding problem, a unicast packet captured by the QoS monitor will not be received by the media player, which means the QoS monitor have affected the operation of the media player. The present invention provides a solution to make the QoS monitor, upon the receipt of a unicast packet, forward the packet to the socket of the media player. In order to guarantee that the forwarded packet can be received by the socket of the media player, the QoS monitor needs to keep the port unchanged and replace the destination IP address with the local host address (127.0.0.1). According to the invention, the QoS monitor can sniff the media player without interference to the normal operation of the media player.
    • 为了进行QoS监控,在应用层捕获数据包时,需要将QoS监视器绑定到与媒体播放器相同的IP地址和端口。 然而,由于单播重复绑定问题,由QoS监视器捕获的单播数据包不会被媒体播放器接收,这意味着QoS监视器影响了媒体播放器的操作。 本发明提供了一种在接收到单播分组时使QoS监视器将分组转发到媒体播放器的套接字的解决方案。 为了保证转发报文能够被媒体播放器的套接字接收,QoS监视器需要保持端口不变,并用本地主机地址替换目的地址(127.0.0.1)。 根据本发明,QoS监视器可以嗅探媒体播放器而不干扰媒体播放器的正常操作。
    • 8. 发明申请
    • VIDEO QUALITY MEASUREMENT
    • 视频质量测量
    • US20140286441A1
    • 2014-09-25
    • US14353351
    • 2011-11-24
    • Fan ZhangNing LiaoKai XieZhibo Chen
    • Fan ZhangNing LiaoKai XieZhibo Chen
    • H04N19/89
    • H04N19/00933H04N17/004H04N19/895
    • A particular implementation receives a bitstream and derives parameters from the bitstream. The parameters include quantization parameters, content unpredictability parameters, ratios of lost blocks, ratios of propagated blocks, error concealment distances, motion vectors, durations of freezing, and frame rates. Using these parameters, a compression distortion factor, a slicing distortion factor, and a freezing distortion factor are estimated respectively for distortions resulting from video compression, a slicing mode error concealment, and a freezing slicing mode error concealment. The distortion factors are then mapped to a composite video quality score. For applications with limited computational power, the estimation of distortion factors can be simplified. In particular, the compression distortion factor, the slicing distortion factor, and the freezing distortion factor can be predicted from quantization parameters, ratios of lost blocks, and durations of freezing, respectively.
    • 特定实现接收比特流并从比特流导出参数。 参数包括量化参数,内容不可预测性参数,丢失块的比率,传播块的比率,错误隐藏距离,运动向量,冻结持续时间和帧速率。 分别使用这些参数来估计压缩失真因子,切片失真因子和冻结失真因子,用于由视频压缩,切片模式错误隐藏和冷冻切片模式错误隐藏产生的失真。 然后将失真因子映射到复合视频质量得分。 对于具有有限计算能力的应用,可以简化失真因子的估计。 具体地,压缩失真因子,切片失真因子和冻结失真因子可以分别从量化参数,丢失块的比率和冻结时间预测。
    • 9. 发明申请
    • METHOD AND DEVICE FOR ASSESSING PACKET DEFECT CAUSED DEGRADATION IN PACKET CODED VIDEO
    • 用于评估分组编码视频中的分组缺陷导致的降解的方法和装置
    • US20140119460A1
    • 2014-05-01
    • US14128623
    • 2011-06-24
    • Xiao Dong GuNing LiaoZhibo Chen
    • Xiao Dong GuNing LiaoZhibo Chen
    • H04N19/89
    • H04N19/89H04N19/154
    • Because of the encoding, decoding, and/or transmitting characteristic, the blocks affected by packet defect usually gather in a small spatial/temporal area. The viewers perception of each affected block will influence by other affected block in this small area. The invention proposes using processing means for clustering blocks affected by the packet loss into at least one cluster, for using at least one of spatial and temporal characteristics of the at least one cluster for determining a visibility value of the at least one cluster, for classifying the at least one cluster as belonging into one of at least two different class candidates, wherein each class candidate is associated with a different weight; for weighting the determined visibility value with the weight associated with the class of the at least one cluster, and for assessing the degradation of the video using a sum of the weighted visibility value.
    • 由于编码,解码和/或发送特性,受分组缺陷影响的块通常聚集在小的空间/时间区域中。 每个受影响区块的观众感知将受到其他受影响区块的影响。 本发明提出使用处理装置,用于将受分组丢失影响的块聚集到至少一个簇中,以便使用至少一个簇的空间和时间特征中的至少一个来确定至少一个簇的可见性值,以便分类 所述至少一个集群属于至少两个不同类候选中的一个,其中每个类候选者与不同的权重相关联; 用于利用与所述至少一个集群的类别相关联的权重对所确定的可见性值进行加权,并且使用加权的可见性值的和来评估视频的劣化。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR ASSESSING QUALITY OF VIDEO STREAM
    • 评估视频质量的方法和装置
    • US20130044224A1
    • 2013-02-21
    • US13695058
    • 2010-04-30
    • Ning LiaoZhibo ChenXianlel Wang
    • Ning LiaoZhibo ChenXianlel Wang
    • H04N17/00
    • H04L12/24H04L41/00H04L65/4076H04L65/80H04N17/004H04N19/154H04N19/196H04N19/46H04N19/61H04N19/86H04N19/895H04N21/435H04N21/6437
    • Objective video quality assessment models at media-layer or at packet-layer are known for estimating audio/video quality of experience. Existing models are not able to provide stable performance. A method for enabling quality assessment of a stream of frames of video data comprises receiving a sequence of packets, generating a set of parameters and inserting said generated set of parameters as side information into said stream of frames, wherein at least one parameter refers to a video slice level. A method for assessing the quality of a stream of frames of video data comprises receiving a sequence of packets, extracting a set of parameters from said sequence of packets and generating an estimated mean opinion score, wherein the video data comprise a slice level and wherein the extracted set of parameters comprises at least one parameter that refers to a video slice level.
    • 用于估计音频/视频体验质量的媒体层或分组层的目标视频质量评估模型是已知的。 现有型号不能提供稳定的性能。 一种用于实现视频数据帧流的质量评估的方法包括接收分组序列,产生一组参数,并将所述生成的参数集合作为辅助信息插入所述帧流中,其中至少一个参数是指 视频切片级别。 一种用于评估视频数据帧流的质量的方法包括接收分组序列,从所述分组序列中提取一组参数并生成估计的平均意见分数,其中所述视频数据包括切片级别,其中, 提取的参数集合包括参考视频片段级别的至少一个参数。