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    • 3. 发明授权
    • Network device
    • 网络设备
    • US08904043B2
    • 2014-12-02
    • US11524299
    • 2006-09-21
    • Erwin Alfons Constant SixDanny De Vleeschauwer
    • Erwin Alfons Constant SixDanny De Vleeschauwer
    • G06F15/16H04L29/06H04L12/801H04L12/893H04L1/16
    • H04L47/10H04L1/1607H04L47/40H04L69/16H04L69/161H04L69/163
    • Network devices (30) receiving first packets from first devices (10) and in response transmitting second packets to second devices (20), and receiving third packets from the second devices (20) and in response transmitting fourth packets to the first devices (10), get manipulation means (40) for manipulating information at layers higher than internet protocol layers of headers of packets for improving transport efficiencies between the first and second devices (10,20). The higher layer may comprise a transport control protocol layer-4 to allow the network devices (30) to take over acknowledging functions of the second devices (20) and to take over re-transmission functions of the first devices (10) and to support the second devices (20) through offering additional buffer space and to support the first devices (10) through offering extended/advanced stream management.
    • 网络设备(30)从第一设备(10)接收第一分组,并且响应于向第二设备(20)发送第二分组,并且从第二设备(20)接收第三分组,并且响应于向第一设备(10 ),获得用于在高于分组报头的互联网协议层的层处理信息的操纵装置(40),以提高第一和第二设备(10,20)之间的传输效率。 较高层可以包括传输控制协议层-4以允许网络设备(30)接管第二设备(20)的确认功能并且接管第一设备(10)的重传功能并且支持 第二设备(20)通过提供额外的缓冲空间并通过提供扩展/高级流管理来支持第一设备(10)。
    • 5. 发明授权
    • Error control on-demand
    • 错误控制按需
    • US08677220B2
    • 2014-03-18
    • US13129015
    • 2009-11-24
    • Koenraad LaevensDanny De VleeschauwerNatalie Degrande
    • Koenraad LaevensDanny De VleeschauwerNatalie Degrande
    • H03M13/00H04L1/00
    • H04L1/0057H04L1/12
    • The present invention relates to a new error control paradigm in a packet switched network that is particularly advantageous for multicast transmission.A transmission Status Vector TSV (T) is updated at the sender side whenever a new outgoing data packet (Dj−1) is scheduled for transmission. A corresponding Reception status Vector RSV (R) is similarly updated at the receive side whenever a new incoming and correctly indexed data packet (Dj−1) is validly received.As soon as a missing or corrupted data packet (Dj) is detected, the update of the RSV is suspended. A request is then sent to the sender to get the current Tsv's value, or a part thereof. The erroneous data packet is then recovered from the current TSV's value (Sk,m), from the lastly updated RSV's value (Sj−1), and from otherwise validly received data packets (Dj+1, . . . , Dk).The present invention more specifically relates to a transmitting unit (100) and a receiving unit (200) implementing that paradigm, and correspondingly to a method for protecting a flow of indexed data packets against data lost or data corruption, and a method for recovering a missing or corrupted data packet within a flow of indexed data packets.
    • 本发明涉及分组交换网络中对组播传输特别有利的新的错误控制范例。 每当新的输出数据分组(Dj-1)被调度用于传输时,在发送器侧更新传输状态向量TSV(T)。 无论何时有效地接收新的传入和正确索引的数据分组(Dj-1),在接收侧类似地更新对应的接收状态向量RSV(R)。 一旦检测到丢失或损坏的数据包(Dj),则RSV的更新被暂停。 然后,向发送方发送请求以获得当前的Tsv值或其一部分。 然后从最后更新的RSV值(Sj-1)和其他有效接收的数据分组(Dj + 1,...,Dk)从当前TSV值(Sk,m)恢复错误的数据分组。 本发明更具体地涉及实现该范例的发送单元(100)和接收单元(200),并且相应于用于保护索引数据分组的数据流免遭数据丢失或数据损坏的方法,以及用于恢复 在索引数据包流中丢失或损坏的数据包。
    • 6. 发明申请
    • Error Control On-Demand
    • 错误控制按需
    • US20110258519A1
    • 2011-10-20
    • US13129015
    • 2009-11-24
    • Koenraad LaevensDanny De VleeschauwerNatalie Degrande
    • Koenraad LaevensDanny De VleeschauwerNatalie Degrande
    • G06F11/00
    • H04L1/0057H04L1/12
    • The present invention relates to a new error control paradigm in a packet switched network that is particularly advantageous for multicast transmission.A transmission Status Vector TSV (T) is updated at the sender side whenever a new outgoing data packet (Dj−1) is scheduled for transmission. A corresponding Reception status Vector RSV (R) is similarly updated at the receive side whenever a new incoming and correctly indexed data packet (Dj−1) is validly received.As soon as a missing or corrupted data packet (Dj) is detected, the update of the RSV is suspended. A request is then sent to the sender to get the current Tsv's value, or a part thereof. The erroneous data packet is then recovered from the current TSV's value (Sk,m), from the lastly updated RSV's value (Sj-1), and from otherwise validly received data packets (Dj+1, . . . , Dk).The present invention more specifically relates to a transmitting unit (100) and a receiving unit (200) implementing that paradigm, and correspondingly to a method for protecting a flow of indexed data packets against data lost or data corruption, and a method for recovering a missing or corrupted data packet within a flow of indexed data packets.
    • 本发明涉及分组交换网络中对组播传输特别有利的新的错误控制范例。 每当新的输出数据分组(Dj-1)被调度用于传输时,在发送器侧更新传输状态向量TSV(T)。 无论何时有效地接收新的传入和正确索引的数据分组(Dj-1),在接收侧类似地更新对应的接收状态向量RSV(R)。 一旦检测到丢失或损坏的数据包(Dj),则RSV的更新被暂停。 然后,向发送方发送请求以获得当前的Tsv值或其一部分。 然后从最后更新的RSV值(Sj-1)和其他有效接收的数据分组(Dj + 1,...,Dk)从当前TSV值(Sk,m)恢复错误的数据分组。 本发明更具体地涉及实现该范例的发送单元(100)和接收单元(200),并且相应于用于保护索引数据分组的数据流免遭数据丢失或数据损坏的方法,以及用于恢复 在索引数据包流中丢失或损坏的数据包。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR INSTANT CHANNEL CHANGE
    • 用于即时通道更改的方法和装置
    • US20070297448A1
    • 2007-12-27
    • US11758652
    • 2007-06-05
    • Heico HEIKENSDanny De VleeschauwerWillem Acke
    • Heico HEIKENSDanny De VleeschauwerWillem Acke
    • H04J3/16
    • H04N21/6587H04N7/173H04N21/23106H04N21/2381H04N21/4384H04N21/44004H04N21/6405H04N21/6408
    • The present invention relates to a network unit adapted to transmit a video channel (Chx) to be played at a nominal motion speed (α), which network unit comprising: a signaling means (104) adapted to receive a request (Join_Chx) from a decoding device (200) whereby transmission of the video channel is requested, a video transmitting means (112) adapted thereupon to transmit the video channel towards the decoding device, initially as a dedicated multimedia stream (UC_Chx) dedicatedly supplied to the decoding device and comprising an independent video frame (I) as first transmitted video frame, and further in time as a common multimedia stream (MC_Chx) commonly supplied to a plurality of decoding devices (200, 220). A network unit according to the invention is characterized in that the video transmitting means is further adapted to transmit the video channel within the dedicated multimedia stream ahead of time with respect to transmission of the video channel within the common multimedia stream, and in that the video channel is to be initially played at an averagely slower motion speed (β, β′, β″, β′″), thereby allowing transmission of the video channel to be resumed with the common multimedia stream. The present invention also relates to a decoding device, to a method for transmitting a video channel, and to a method for receiving and playing that video video channel.
    • 本发明涉及适于以标称运动速度(α)传输要播放的视频频道(Chx)的网络单元,该网络单元包括:信令装置(104),适于从 解码装置(200),由此请求视频信道的传输;视频发送装置(112),适于随后向解码装置发送视频信道,最初作为专门提供给解码装置的专用多媒体流(UC_Chx),并且包括 作为第一发送视频帧的独立视频帧(I),并且作为通常提供给多个解码装置(200,220)的公共多媒体流(MC_Chx),进一步作为时间。 根据本发明的网络单元的特征在于,视频发送装置还适于相对于公共多媒体流内的视频信道的传输而在专用多媒体流中传输视频信道,并且视频 频道最初以平均较慢的运动速度(beta,beta',beta“,beta”“)播放,从而允许用公共多媒体流传输要恢复的视频频道。 本发明还涉及一种解码装置,一种用于发送视频信道的方法,以及一种用于接收和播放该视频视频信道的方法。
    • 9. 发明申请
    • PROVIDING OF ENCODED VIDEO APPLICATIONS IN A NETWORK ENVIRONMENT
    • 在网络环境中提供编码视频应用程序
    • US20130101017A1
    • 2013-04-25
    • US13643459
    • 2011-04-26
    • Danny De VleeschauwerPhilippe Fischer
    • Danny De VleeschauwerPhilippe Fischer
    • H04N7/12
    • A63F13/355A63F13/12A63F13/358A63F13/525A63F2300/534A63F2300/538H04N19/103H04N19/134H04N19/176H04N19/196H04N19/197H04N19/46H04N19/52H04N19/537H04N19/597H04N21/4781H04N21/6587
    • A method for providing an encoded video application (3D APP; 2DAPP) from a server (SERVER) to a respective client (CLIENT1, . . . , CLIENTN) user via a communications link, comprises steps of updating scenes pertaining to said video application (3DAPP; 2DAPP) at said server (SERVER), deriving therefrom a respective video stream (2Dvideo 1, . . . 2DvideoN) comprising a succession of respective 2D user-related viewpoints for said respective client (CLIENT1, . . . , CLIENTN), calculating at least one respective compression related parameter (ep2D—1, . . . , ep2D_N) from application object vertex information extracted from a subset of successive ones of said scenes pertaining to said video application (3DAPP; 2DAPP) at said server, using said respective compression related parameter (ep2D—1, . . . , ep2D_N) during subsequent encoding of said respective video stream (2D-video1, . . . 2DvideoN), for thereby generating a respective encoded video stream (encoded2D video—1, . . . , encoded2DvideoN) for provision to said respective client user (CLIENT1, . . . , CLIENTN). A server adapted to perform this method is disclosed as well
    • 用于经由通信链路从服务器(SERVER)向相应客户端(CLIENT1,...,CLIENTN)用户提供编码视频应用(3D APP; 2DAPP)的方法包括以下步骤:更新与所述视频应用有关的场景 3DAPP; 2DAPP),在所述服务器(SERVER)处,从其导出包括用于所述各个客户端(CLIENT1,...,CLIENTN)的一系列相应的2D用户相关视点的相应视频流(2Dvideo1 ... 2DvideoN) 从在所述服务器上与所述视频应用(3DAPP; 2DAPP)相关的所述场景的连续的一个场景的子集中提取的应用对象顶点信息中,使用所述的应用对象顶点信息来计算至少一个相应的压缩相关参数(ep2D-1,...,ep2D_N) 在所述相应视频流(2D-video1 ... 2DvideoN)的后续编码期间,分别压缩相关参数(ep2D-1,...,ep2D_N)),从而生成相应的编码视频流(encoded2D video-1,...) 。,encoded2Dvid eoN)用于提供给所述相应的客户端用户(CLIENT1, 。 。 ,CLIENTN)。 还公开了适于执行该方法的服务器
    • 10. 发明申请
    • METHOD FOR STREAMING VIDEO CONTENT, EDGE NODE AND CLIENT ENTITY REALIZING SUCH A METHOD
    • 用于流式传输视频内容的方法,边缘节点和客户机实现这种方法
    • US20140189150A1
    • 2014-07-03
    • US14237703
    • 2012-07-09
    • Danny De VleeschauwerDave Robinson
    • Danny De VleeschauwerDave Robinson
    • H04L29/06
    • H04L65/4069H04L65/4084H04L65/605H04L65/80
    • Method for streaming video content from a video server entity to a client entity via a core network and an aggregation network connected through an edge node. The server entity can be either the origin server or a serving node in a CDN that acts as a surrogate server. The video content is offered by the video server entity as a set of consecutive fragments (or chunks or segments), each fragment of this set of consecutive fragments being offered in a plurality of quality levels corresponding to respective encoded bit rates. The method comprises the steps of: transmitting via the network from said client entity to said video server entity via said edge node one or more requests for fragments with a target quality level of said video content to be displayed at said client entity; and receiving at said client entity via said network one or more replies to the requests containing fragments with said target quality levels. The method further comprises the steps of said edge node evaluating the available throughput for said client entity to transmit said fragments to said client entity over said aggregation network and said edge node informing said client entity about said available throughput.
    • 用于经由核心网络和通过边缘节点连接的聚合网络将视频内容从视频服务器实体流向客户端实体的方法。 服务器实体可以是作为代理服务器的CDN中的源服务器或服务节点。 视频内容由视频服务器实体提供为一组连续片段(或块或片段),该组连续片段的每个片段以对应于相应编码比特率的多个质量级别提供。 所述方法包括以下步骤:经由所述客户端实体经由所述边缘节点经由所述客户端实体向所述视频服务器实体发送对所述视频内容的目标质量等级的所述片段的一个或多个请求在所述客户端实体上显示; 并且在所述客户实体经由所述网络接收包含具有所述目标质量等级的片段的请求的一个或多个答复。 该方法还包括以下步骤:所述边缘节点评估所述客户端实体的可用吞吐量,以便通过所述聚合网络将所述片段发送到所述客户端实体,并且所述边缘节点向所述客户端实体通知所述可用吞吐量。