Dynamic Medium Switch in Co-Located PLC and RF Networks
    11.
    发明申请
    Dynamic Medium Switch in Co-Located PLC and RF Networks 审中-公开
    共同PLC和RF网络中的动态中间交换机

    公开(公告)号:US20160028438A1

    公开(公告)日:2016-01-28

    申请号:US14878178

    申请日:2015-10-08

    Abstract: A method for implementing a convergence layer. Data is received on a first communication medium by a first transceiver. Data is transmitted on the first communication medium by the first transceiver. A signal is received. Causing, through the convergence layer, by a control logic in response to the signal, the data received and transmitted on the first communication medium as part of a communication session to be received and transmitted instead by a second transceiver on a second communication medium, wherein the convergence layer is configured to conceal from a routing layer at least one of: information related to the first signal, and information related to the data being received and transmitted on the second communication medium.

    Abstract translation: 一种实现会聚层的方法。 通过第一收发器在第一通信介质上接收数据。 数据由第一收发器在第一通信介质上传送。 接收到一个信号。 通过汇聚层通过响应于该信号的控制逻辑,将第一通信介质上接收和发送的数据作为要在第二通信介质上被第二收发器接收和发送的通信会话的一部分,其中 汇聚层被配置为从路由层隐藏以下至少一个:与第一信号相关的信息,以及与在第二通信介质上正在接收和发送的数据相关的信息。

    COEXISTENCE OF WIRELESS SENSOR NETWORKS WITH OTHER WIRELESS NETWORKS
    12.
    发明申请
    COEXISTENCE OF WIRELESS SENSOR NETWORKS WITH OTHER WIRELESS NETWORKS 有权
    无线传感器网络与其他无线网络的共存

    公开(公告)号:US20130259016A1

    公开(公告)日:2013-10-03

    申请号:US13852174

    申请日:2013-03-28

    CPC classification number: H04W72/1215 H04W4/80 H04W84/12 H04W84/18 H04W88/06

    Abstract: A wireless device includes a wireless transceiver configured to transmit to and receive from nodes in a wireless sensor network (WSN) and control logic coupled to the first wireless transceiver. The wireless transceiver transmits a wireless packet to a node in the WSN based on the transmission coinciding with a break in transmissions for a second wireless network. Based on the wireless transceiver being configured to transmit the wireless packets utilizing time synchronized channel hopping, slot frames for packet transmissions in the WSN are time offset so as not to coincide with transmissions made on the second wireless network. Based on the wireless transceiver being configured to transmit the packets utilizing coordinated sampled listening, wake up sequence transmissions for the WSN are time offset so as not to coincide with the transmissions made on the second wireless network.

    Abstract translation: 无线设备包括被配置为向无线传感器网络(WSN)中的节点传送和从其接收的无线收发机以及耦合到第一无线收发器的控制逻辑。 无线收发器基于与第二无线网络的传输中断一致的传输将无线分组传送到WSN中的节点。 基于无线收发器被配置为使用时间同步信道跳频发送无线分组,用于WSN中的分组传输的时隙帧是时间偏移的,以便不与在第二无线网络上进行的传输相一致。 基于无线收发器被配置为使用协调采样监听来发送分组,用于WSN的唤醒序列传输是时间偏移,以便不与在第二无线网络上进行的传输相一致。

    COEXISTENCE OF WIRELESS SENSOR NETWORKS WITH OTHER WIRELESS NETWORKS

    公开(公告)号:US20200077418A1

    公开(公告)日:2020-03-05

    申请号:US16679929

    申请日:2019-11-11

    Abstract: A method for communicating in a wireless sensor network (WSN) is described. Using control logic, a first wireless transceiver is caused to transmit a wireless packet to a node in a wireless sensor network. The control logic bases its causing on a transmission coinciding with a break in transmission for a second wireless network, such that the transmission from the first wireless transceiver does not coincide with transmissions made on the second wireless network. Time synchronized channel hopping (TSCH) slot frames for wireless packet transmission in the wireless sensor network are caused to be time offset if the first wireless transceiver is utilizing TSCH. Wake up sequence transmissions for the wireless sensor network are caused to be time offset if the first wireless transceiver is utilizing coordinated sampled listening (CSL).

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