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    • 6. 发明申请
    • METHODS AND ARRANGEMENTS FOR TRAFFIC INDICATION MAPPING IN WIRELESS NETWORKS
    • 无线网络中交通指示映射的方法和安排
    • US20150029933A1
    • 2015-01-29
    • US13977706
    • 2011-12-31
    • Minyoung ParkThomas J. KenneyEmily H. QiThomas A. Tetzlaff
    • Minyoung ParkThomas J. KenneyEmily H. QiThomas A. Tetzlaff
    • H04W28/06
    • H04W28/065H04L1/0079H04W28/06H04W68/005H04W72/1289
    • Embodiments may implement a new hierarchical data structure for traffic indication mapping to facilitate transmissions for wireless communications devices. Many embodiments comprise MAC sublayer logic to generate and transmit management frames such as beacon frames with a partial virtual bitmap based upon the hierarchical data structure for traffic indication mapping. In some embodiments, the MAC sublayer logic may store the traffic indication map and/or the traffic indication map structure in memory, in logic, or in another manner that facilitates transmission of the frames. Some embodiments may receive, detect, and decode communications with frames comprising the partial virtual bitmap based upon the hierarchical data structure. In some embodiments, indications of buffered data for pages, blocks, sub-blocks, and/or stations may be inverted. In several embodiments, a new association identifier (AID) structure is defined for the new hierarchical data structure for traffic indication mapping.
    • 实施例可以实现用于业务指示映射的新的分层数据结构,以便于无线通信设备的传输。 许多实施例包括MAC子层逻辑,用于基于用于业务指示映射的分层数据结构来生成和发送诸如具有部分虚拟位图的信标帧的管理帧。 在一些实施例中,MAC子层逻辑可以将存储器中的业务指示映射和/或业务指示映射结构存储在逻辑中,或以促进帧的传输的另一种方式存储。 一些实施例可以基于分层数据结构来接收,检测和解码与包括部分虚拟位图的帧的通信。 在一些实施例中,页面,块,子块和/或站的缓冲数据的指示可以被反转。 在几个实施例中,针对业务指示映射的新的分层数据结构定义了新的关联标识符(AID)结构。
    • 9. 发明申请
    • Methods and Arrangements for Adaptive Delay Control
    • 自适应延迟控制的方法和布置
    • US20140185535A1
    • 2014-07-03
    • US13730990
    • 2012-12-29
    • Minyoung ParkAdrian P. StephensThomas A. TetzlaffEmily H. Qi
    • Minyoung ParkAdrian P. StephensThomas A. TetzlaffEmily H. Qi
    • H04W74/04
    • H04W74/04H04W56/0005
    • Logic may comprise hardware and/or code to coordinate communications of wireless communications devices. Logic coordinate communications in an access point by implementing adaptive delays. Logic may determine a delay for stations awaking from a doze state during which the station should perform clear channel assessment prior to transmitting packets on a channel. Logic may collect information about devices and/or communications within a basic service set (BSS) such as the statistics of the received packets length in time, the type of stations in the network, and/or other information available. Based upon the information collected, the logic may determine a delay and transmit the delay to devices in the BSS. Logic may receive and update the delay in memory and then implement the delay after switching to an awake state from a doze state.
    • 逻辑可以包括用于协调无线通信设备的通信的硬件和/或代码。 通过实现自适应延迟在接入点进行逻辑坐标通信。 逻辑可以确定从瞌睡状态唤醒的站的延迟,在该状态期间,站应在信道上传送分组之前执行清除信道评估。 逻辑可以收集关于基本服务集(BSS)内的设备和/或通信的信息,诸如接收的分组的时间长度的统计,网络中的站的类型和/或可用的其他信息。 基于收集的信息,逻辑可以确定延迟并将延迟发送到BSS中的设备。 逻辑可以接收和更新存储器中的延迟,然后在从打盹状态切换到唤醒状态之后实现延迟。