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    • 2. 发明申请
    • Hybrid distance vector protocol for wireless mesh networks
    • 用于无线网状网络的混合距离矢量协议
    • US20070025274A1
    • 2007-02-01
    • US11364020
    • 2006-02-27
    • Shahriar RahmanRobert O'HaraJohannes Kruys
    • Shahriar RahmanRobert O'HaraJohannes Kruys
    • H04L12/28H04L12/56
    • H04W40/26H04L45/04
    • A method of hybrid route discovery in a mesh network is described. The method comprises the optional designation of a root node of the mesh network and formatting a route request message at an originating mesh point, where the route request messages include a hop limit parameter. If a root node has been configured, the route request is responded to with a message that describes the route to the root. If a direct route between two nodes is required, the route request message is broadcast from the originating mesh point, and the hop limit parameter limits the number of times the route request message will be forwarded. The originating mesh point receives a unicast route reply message from a neighboring mesh point, after the neighboring mesh point received the route request message. Finally, a route connecting the originating mesh point and the destination mesh point is established.
    • 描述了网状网络中混合路由发现的方法。 该方法包括可选地指定网状网络的根节点,并且在发起网格点格式化路由请求消息,其中路由请求消息包括跳数限制参数。 如果已经配置了根节点,则路由请求将使用描述到根路由的消息进行响应。 如果需要两个节点之间的直连路由,则从始发网点广播路由请求消息,并且跳数限制参数限制路由请求消息将被转发的次数。 在相邻网格点接收到路由请求消息之后,始发网格点从相邻网格点接收单播路由应答消息。 最后,建立连接起始网格点和目的网格点的路由。
    • 3. 发明授权
    • Unscheduled protocols for switched antenna arrays
    • 交换天线阵列的非计划协议
    • US08165534B2
    • 2012-04-24
    • US12180710
    • 2008-07-28
    • Robert MeierStephen SaligaJohannes KruysDavid Petsko
    • Robert MeierStephen SaligaJohannes KruysDavid Petsko
    • H04B1/38H04B1/00
    • H04B7/0604H04B7/0822H04B7/0825
    • In an example embodiment, an apparatus, comprising a first wireless transceiver, a first directional antenna coupled to the first wireless transceiver, a second wireless transceiver, a second directional antenna coupled to the second wireless transceiver, and control logic coupled to the first wireless transceiver and the second wireless transceiver. The first wireless transceiver and second wireless transceiver can concurrently receive wireless signals that are spatially separated. The first wireless transceiver asserts a signal while communicating with another wireless device. The control logic is configured to prevent the second wireless transceiver from transmitting while the first wireless transceiver is asserting the signal.
    • 在示例实施例中,一种装置,包括第一无线收发器,耦合到第一无线收发器的第一定向天线,第二无线收发器,耦合到第二无线收发器的第二定向天线以及耦合到第一无线收发器的控制逻辑 和第二个无线收发器。 第一无线收发器和第二无线收发器可同时接收空间分离的无线信号。 第一个无线收发器在与另一个无线设备通信时断言一个信号。 所述控制逻辑被配置为在所述第一无线收发器断言所述信号时防止所述第二无线收发器发送。
    • 5. 发明授权
    • Unscheduled protocols for switched antenna arrays
    • 交换天线阵列的非计划协议
    • US08526887B2
    • 2013-09-03
    • US13366404
    • 2012-02-06
    • Robert MeierStephen SaligaJohannes KruysDavid Petsko
    • Robert MeierStephen SaligaJohannes KruysDavid Petsko
    • H04B1/00
    • H04B7/0604H04B7/0822H04B7/0825
    • In an example embodiment, an apparatus, comprising a first wireless transceiver, a first directional antenna coupled to the first wireless transceiver, a second wireless transceiver, a second directional antenna coupled to the second wireless transceiver, and control logic coupled to the first wireless transceiver and the second wireless transceiver. The first wireless transceiver and second wireless transceiver can concurrently receive wireless signals that are spatially separated. The first wireless transceiver asserts a signal while communicating with another wireless device. The control logic is configured to prevent the second wireless transceiver from transmitting while the first wireless transceiver is asserting the signal.
    • 在示例实施例中,一种装置,包括第一无线收发器,耦合到第一无线收发器的第一定向天线,第二无线收发器,耦合到第二无线收发器的第二定向天线以及耦合到第一无线收发器的控制逻辑 和第二个无线收发器。 第一无线收发器和第二无线收发器可同时接收空间分离的无线信号。 第一个无线收发器在与另一个无线设备通信时断言一个信号。 所述控制逻辑被配置为在所述第一无线收发器断言所述信号时防止所述第二无线收发器发送。
    • 6. 发明申请
    • UNSCHEDULED PROTOCOLS FOR SWITCHED ANTENNA ARRAYS
    • 用于切换天线阵列的无协调协议
    • US20120135694A1
    • 2012-05-31
    • US13366404
    • 2012-02-06
    • Robert MeierStephen SaligaJohannes KruysDavid Petsko
    • Robert MeierStephen SaligaJohannes KruysDavid Petsko
    • H04B1/44
    • H04B7/0604H04B7/0822H04B7/0825
    • In an example embodiment, an apparatus, comprising a first wireless transceiver, a first directional antenna coupled to the first wireless transceiver, a second wireless transceiver, a second directional antenna coupled to the second wireless transceiver, and control logic coupled to the first wireless transceiver and the second wireless transceiver. The first wireless transceiver and second wireless transceiver can concurrently receive wireless signals that are spatially separated. The first wireless transceiver asserts a signal while communicating with another wireless device. The control logic is configured to prevent the second wireless transceiver from transmitting while the first wireless transceiver is asserting the signal.
    • 在示例实施例中,一种装置,包括第一无线收发器,耦合到第一无线收发器的第一定向天线,第二无线收发器,耦合到第二无线收发器的第二定向天线以及耦合到第一无线收发器的控制逻辑 和第二个无线收发器。 第一无线收发器和第二无线收发器可同时接收空间分离的无线信号。 第一个无线收发器在与另一个无线设备通信时断言一个信号。 所述控制逻辑被配置为在所述第一无线收发器断言所述信号时防止所述第二无线收发器发送。
    • 7. 发明申请
    • System and method for detection of primary spectrum users
    • 用于检测主要频谱用户的系统和方法
    • US20070060065A1
    • 2007-03-15
    • US11225719
    • 2005-09-13
    • Johannes KruysChristopher Meil
    • Johannes KruysChristopher Meil
    • H04B17/00
    • G01S7/021H04W16/14H04W48/16H04W74/08
    • An external primary spectrum user detector (ESUD) is used to take over the role of integral radar detectors, and relieve user devices of the constraints associated with Primary Spectrum User detection. The ESUD can establish a relationship with the user devices by means of a cryptographic signature. The ESUD installation includes assigning it a frequency band to scan for primary spectrum user signals and the type of signals to be detected. Once activated, the ESUD will scan its assigned frequencies and emit to types of messages, “All Clear” and “Primary Spectrum User detected.” User devices on the network listen for the ESUD messages. In the absence of messages from the ESUD, the user devices activate their internal primary spectrum user detectors until ESUD messages are received.
    • 外部主要频谱用户检测器(ESUD)用于接管整体式雷达探测器的作用,并缓解用户设备与主要频谱用户检测相关的限制。 ESUD可以通过加密签名与用户设备建立关系。 ESUD安装包括为其分配频带以扫描主频谱用户信号和要检测的信号的类型。 一旦激活,ESUD将扫描其分配的频率,并发送到“所有清除”和“检测到主要频谱用户”的消息类型。 网络上的用户设备侦听ESUD消息。 在没有来自ESUD的消息的情况下,用户设备激活其内部主要频谱用户检测器,直到收到ESUD消息。