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Dynamic Active Period Control achieving Low Energy Consumption and Low Latency in Multi-hop Wireless Sensor Networks

机译:动态活动周期控制在多跳无线传感器网络中实现低能量消耗和低延迟

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IEEE 802.15.4 beacon-enabled mode can use the superframe structure for data transmission. In using the superframe structure, the duty cycle of the wireless personal area network defined by the values of the beacon order (BO) and superframe order (SO) can be adjusted in order to achieve high channel utilization and low power consumption. The optimum values of BO and SO vary according to the network condition. The present paper proposes a novel method that achieves low power consumption and low latency in a multi-hop wireless sensor network. In the proposed method, active periods in the superframe structure are appropriately assigned to routing nodes according to the network topology prior to data transmission, and the values of SO are dynamically adjusted depending on the traffic load. Simulation results demonstrate the effectiveness of the proposed method.
机译:IEEE 802.15.4支持标信标模式可以使用超帧结构进行数据传输。 在使用超帧结构时,可以调整由信标订单(BO)和超帧顺序(SO)的值定义的无线个人区域网络的占空比,以便实现高信道利用率和低功耗。 根据网络条件,博的最佳值等。 本文提出了一种新的方法,可以在多跳无线传感器网络中实现低功耗和低延迟。 在所提出的方法中,超帧结构中的活动周期被适当地分配给根据数据传输之前的网络拓扑的路由节点,并且根据业务负载动态调整所以的值。 仿真结果证明了该方法的有效性。

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