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    • 4. 发明授权
    • Acknowledgement message modification in communication networks
    • 通信网络中的确认消息修改
    • US07526705B2
    • 2009-04-28
    • US11121191
    • 2005-05-03
    • Jan BoerWilhelmus DiepstratenJoachim S. HammerschmidtSyed Aon Mujtaba
    • Jan BoerWilhelmus DiepstratenJoachim S. HammerschmidtSyed Aon Mujtaba
    • H04L1/18H03M13/00
    • H04L1/1829
    • A method for processing a received encoded data unit comprises: decoding the received encoded data unit; determining whether the encoded data unit has been correctly received; prior to completing the determination of whether the encoded data unit has been correctly received, initiating the transmission of an acknowledgment message; and modifying the transmission of the acknowledgment message if it is determined that the data unit has not been correctly received. In another embodiment, a station for a communications network comprises: a decoder adapted to decode a received encoded data unit; a check processor adapted to determine whether the encoded data unit has been correctly received; and a transmitter adapted to initiate the transmission of an acknowledgment message prior to the check processor completing the determination whether the encoded data unit has been correctly received. The transmitter is adapted to modify the transmission of the acknowledgment message if the check processor determines that the data unit has not been correctly received.
    • 一种用于处理接收的编码数据单元的方法包括:对所接收的编码数据单元进行解码; 确定编码数据单元是否已被正确接收; 在完成编码数据单元是否已被正确接收的确定之前,发起确认消息的发送; 以及如果确定所述数据单元未被正确接收,则修改所述确认消息的传输。 在另一个实施例中,用于通信网络的站包括:适于对接收的编码数据单元进行解码的解码器; 校验处理器,用于确定编码数据单元是否已被正确接收; 以及发射机,其适于在所述检查处理器完成所述编码数据单元是否已被正确接收到的确定之前发起确认消息的传输。 如果检查处理器确定数据单元未被正确接收,则发射机适于修改确认消息的传输。
    • 5. 发明申请
    • Techniques for managing priority queues and escalation considerations in USB wireless communication systems
    • 在USB无线通信系统中管理优先级队列和升级注意事项的技术
    • US20060277330A1
    • 2006-12-07
    • US11141106
    • 2005-06-01
    • Wilhelmus DiepstratenAart Jan GeurtsenSteven StraussMark Trafford
    • Wilhelmus DiepstratenAart Jan GeurtsenSteven StraussMark Trafford
    • G06F3/00
    • H04W72/1242H04L47/50H04L47/6215H04L47/6285
    • Quality of Service (QoS) mechanisms and facilities are introduced into USB-based wireless Local Area Networking (LAN) communication systems. Techniques are provided for managing multiple priority queues in USB-based wireless communications systems, and for ensuring that lower priority traffic is not precluded from accessing the medium during sustained periods of use by high(er) priority traffic. A method is provided to resolve Quality of Service issues in emerging high-speed USB-based communications systems by offering support for multiple queue management within the system. A further embodiment provides an escalation mechanism for the purposes of mitigating low priority class data starvation in these communications systems, when it becomes an issue. QoS initiatives escalate a lower priority traffic class for the purposes of mitigating low priority class data starvation of the present invention, and/or use a single data buffer with management techniques to temporarily block or flow control data on a lower priority channel.
    • 服务质量(QoS)机制和设施被引入到基于USB的无线局域网(LAN)通信系统中。 提供了用于在基于USB的无线通信系统中管理多个优先级队列的技术,并且用于确保在高(呃)优先业务的持续使用期间不会阻止较低优先级的业务访问该介质。 提供了一种通过提供系统内多队列管理支持来解决新兴高速USB通信系统中服务质量问题的方法。 当其成为问题时,另一实施例提供了用于减轻这些通信系统中的低优先级数据饥饿的升级机制。 为了减轻本发明的低优先级数据的不足,和/或使用具有管理技术的单个数据缓冲器临时阻止或流量控制低优先级信道上的数据,QoS举措提高了较低优先级的流量级别。
    • 9. 发明授权
    • Managing priority queues and escalation in wireless communication systems
    • 管理无线通信系统中的优先队列和升级
    • US07421273B2
    • 2008-09-02
    • US10443072
    • 2003-05-22
    • Wilhelmus DiepstratenJayant SomaniSteven E. Strauss
    • Wilhelmus DiepstratenJayant SomaniSteven E. Strauss
    • H04Q7/20
    • H04W28/14H04L47/14H04L47/245H04L47/50H04L47/6215H04L47/6235H04L47/6285H04W84/12
    • A method and system for servicing data traffic in wireless local area networks (such as IEEE 802.11 networks) in multiple queues having different levels of priority. These queues include at least a low priority queue for ‘best effort’ traffic, a medium priority queue for streaming data such as video pictures, and a high priority queue for voice traffic, and are serviced in order of decreasing priority. To prevent the ‘best effort’ traffic in the low priority queue from being ‘starved’, a bit is set to indicate when such a condition is likely to occur, and the low priority queue is served first when that bit has been set. Alternatively, low and medium priority traffic is handled on a weighted round-robin basis, and high priority traffic is given strict priority over both. Transmit and receive queues are handled on a rotating priority basis.
    • 一种在具有不同优先级别的多个队列中为无线局域网(例如IEEE 802.11网络)中的数据业务提供服务的方法和系统。 这些队列至少包括用于“尽力而为”业务的低优先级队列,用于诸如视频图像的流数据的中等优先级队列和用于语音业务的高优先级队列,并且按优先级降低的顺序被服务。 为了防止低优先级队列中的“尽力而为”流量被“饿死”,设置一个位来指示何时可能发生这种情况,并且在该位被设置时首先提供低优先级队列。 或者,低权重和中等优先级业务以加权循环为基础处理,并且高优先级业务被赋予两者严格的优先级。 发送和接收队列以旋转优先级为基础进行处理。