Securing Transmit Openings By The Requester
    1.
    发明申请
    Securing Transmit Openings By The Requester 有权
    确保要求者发送开放

    公开(公告)号:US20140198692A1

    公开(公告)日:2014-07-17

    申请号:US13739180

    申请日:2013-01-11

    CPC classification number: H04L69/02 H04W74/04

    Abstract: Techniques for securing transmit opening help enhance the operation of a station that employs the technique. The techniques may facilitate low latency response to a protocol data requester, for instance. The techniques provide ways for the protocol data requester to provide additional time for the protocol data responder to obtain the needed response data for the protocol data requester. One way in which this can be done is by intelligently lengthing the protocol request transmitted by the protocol requester.

    Abstract translation: 用于确保传输开口的技术有助于增强采用该技术的站的操作。 例如,这些技术可以促进对协议数据请求者的低延迟响应。 这些技术提供了协议数据请求者为协议数据应答器提供额外时间以获得协议数据请求者所需的响应数据的方式。 可以这样做的一种方式是通过智能地缩短由协议请求者发送的协议请求。

    Localized dynamic channel time allocation
    2.
    发明授权
    Localized dynamic channel time allocation 有权
    本地化动态频道时间分配

    公开(公告)号:US09042904B2

    公开(公告)日:2015-05-26

    申请号:US14231970

    申请日:2014-04-01

    CPC classification number: H04W72/0446 H04L5/0092 H04W72/1268 H04W72/1289

    Abstract: Techniques for localized dynamic channel allocation help meet the challenges of latency, memory size, and channel time optimization for wireless communication systems. As examples, advanced communication standards, such as the WiGig standard, may support wireless docking station capability and wireless streaming of high definition video content between transmitting and receiving stations, or engage in other very high throughput tasks. The techniques help to deliver the desired user experience in such an environment and support desired performance levels for latency and throughput while controlling memory footprint.

    Abstract translation: 用于本地化动态信道分配的技术有助于应对无线通信系统的延迟,存储器大小和信道时间优化的挑战。 作为示例,诸如WiGig标准的高级通信标准可以支持发射站和接收站之间的高清晰度视频内容的无线对接站能力和无线流,或者参与其它非常高的吞吐量任务。 这些技术有助于在这样的环境中提供所需的用户体验,并在控制内存占用的同时支持延迟和吞吐量的所需性能水平。

    Securing transmit openings by the requester
    3.
    发明授权
    Securing transmit openings by the requester 有权
    确保请求者的传输开口

    公开(公告)号:US09036478B2

    公开(公告)日:2015-05-19

    申请号:US13739180

    申请日:2013-01-11

    CPC classification number: H04L69/02 H04W74/04

    Abstract: Techniques for securing transmit opening help enhance the operation of a station that employs the technique. The techniques may facilitate low latency response to a protocol data requester, for instance. The techniques provide ways for the protocol data requester to provide additional time for the protocol data responder to obtain the needed response data for the protocol data requester. One way in which this can be done is by intelligently lengthing the protocol request transmitted by the protocol requester.

    Abstract translation: 用于确保传输开口的技术有助于增强采用该技术的站的操作。 例如,这些技术可以促进对协议数据请求者的低延迟响应。 这些技术提供了协议数据请求者为协议数据应答器提供额外时间以获得协议数据请求者所需的响应数据的方式。 可以这样做的一种方式是通过智能地缩短由协议请求者发送的协议请求。

    Localized Dynamic Channel Time Allocation
    4.
    发明申请
    Localized Dynamic Channel Time Allocation 有权
    本地化动态通道时间分配

    公开(公告)号:US20140213273A1

    公开(公告)日:2014-07-31

    申请号:US14231970

    申请日:2014-04-01

    CPC classification number: H04W72/0446 H04L5/0092 H04W72/1268 H04W72/1289

    Abstract: Techniques for localized dynamic channel allocation help meet the challenges of latency, memory size, and channel time optimization for wireless communication systems. As examples, advanced communication standards, such as the WiGig standard, may support wireless docking station capability and wireless streaming of high definition video content between transmitting and receiving stations, or engage in other very high throughput tasks. The techniques help to deliver the desired user experience in such an environment and support desired performance levels for latency and throughput while controlling memory footprint.

    Abstract translation: 用于本地化动态信道分配的技术有助于应对无线通信系统的延迟,内存大小和信道时间优化的挑战。 作为示例,诸如WiGig标准的高级通信标准可以支持发射站和接收站之间的高清晰度视频内容的无线对接站能力和无线流,或者参与其它非常高的吞吐量任务。 这些技术有助于在这样的环境中提供所需的用户体验,并在控制内存占用的同时支持延迟和吞吐量的所需性能水平。

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