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    • 6. 发明授权
    • Multi-radio unification protocol
    • 多无线电统一协议
    • US08078208B2
    • 2011-12-13
    • US11709962
    • 2007-02-23
    • Alastair WolmanAtul AdyaParamvir BahlJitendra D. PadhyeLidong Zhou
    • Alastair WolmanAtul AdyaParamvir BahlJitendra D. PadhyeLidong Zhou
    • H04B7/00
    • H04W92/18H04L29/06H04L69/14H04W72/08H04W74/02H04W80/04H04W84/12H04W84/18H04W88/04H04W88/06
    • An invention is disclosed whereby a wireless network node, equipped with two or more radio transceivers statically tuned to non-interfering frequency channels, can make decisions regarding which channel to use when communicating with a neighboring wireless node. A multi-radio unification protocol implemented in a wireless node coordinates the use of multiple wireless network interface cards and provides a virtual layer that hides the multiple physical network interfaces from higher layers of a node's network protocol stack. The invention is applicable to wireless networks generally, including those in which some nodes do not have multiple radios or do not recognize the multi-radio unification protocol. The invention makes possible simultaneous transmissions using available channels, thereby reducing interference and delay while increasing the overall capacity of the network.
    • 公开了一种发明,由此配备有两个或更多个静态调谐到非干扰频率信道的无线电收发机的无线网络节点可以在与相邻无线节点进行通信时作出关于使用哪个信道的决定。 在无线节点中实现的多无线电统一协议协调使用多个无线网络接口卡,并提供从节点网络协议栈的较高层隐藏多个物理网络接口的虚拟层。 本发明一般适用于无线网络,包括某些节点不具有多个无线电或不识别多无线电统一协议的无线网络。 本发明可以使用可用信道进行同时传输,从而减少干扰和延迟,同时增加网络的整体容量。
    • 8. 发明授权
    • Platform for enterprise wireless network management applications
    • 企业无线网络管理应用平台
    • US07668513B2
    • 2010-02-23
    • US11474652
    • 2006-06-26
    • Alastair WolmanBrian D. ZillJitendra D. PadhyeParamvir BahlRanveer Chandra
    • Alastair WolmanBrian D. ZillJitendra D. PadhyeParamvir BahlRanveer Chandra
    • H04B17/00
    • H04L43/12H04L41/0213
    • A framework for wireless network management applications in an enterprise environment using existing general purpose computing devices is presented. At least one of the devices is configured with a wireless adapter and is used as an AirMonitor to monitor one or more wireless networks. Other devices are configured as LandMonitors to monitor traffic on a wired network in the enterprise environment. At least one inference engine uses the LandMonitors and AirMonitors by assigning them monitoring tasks. Data from the monitoring tasks are stored in a database. Analysis of the data that is computationally intensive is generally performed by the inference engines. Wireless network management applications use the framework by installing and running application-specific components (e.g., filters) on the AirMonitors, LandMonitors, and/or inference engines.
    • 介绍了使用现有通用计算设备的企业环境中无线网络管理应用的框架。 至少一个设备配置有无线适配器,并用作AirMonitor来监视一个或多个无线网络。 其他设备被配置为LandMonitor以监视企业环境中有线网络上的流量。 至少一个推理机通过分配监控任务来使用LandMonitor和AirMonitor。 来自监控任务的数据存储在数据库中。 计算密集的数据的分析通常由推理引擎执行。 无线网络管理应用程序通过在AirMonitor,LandMonitor和/或推理引擎上安装和运行特定于应用程序的组件(例如,过滤器)来使用该框架。