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首页> 外文期刊>Progress in Artificial Intelligence >Energy-Efficient Method for Wireless Sensor Networks Low-Power Radio Operation in Internet of Things
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Energy-Efficient Method for Wireless Sensor Networks Low-Power Radio Operation in Internet of Things

机译:无线传感器网络的节能方法低功率无线电操作在互联网上

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The radio operation in wireless sensor networks (WSN) in Internet of Things (IoT) applications is the most common source for power consumption. Consequently, recognizing and controlling the factors affecting radio operation can be valuable for managing the node power consumption. Among essential factors affecting radio operation, the time spent for checking the radio is of utmost importance for monitoring power consumption. It can lead to false WakeUp or idle listening in radio duty cycles and ContikiMAC. ContikiMAC is a low-power radio duty-cycle protocol in Contiki OS used in WakeUp mode, as a clear channel assessment (CCA) for checking radio status periodically. This paper presents a detailed analysis of radio WakeUp time factors of ContikiMAC. Furthermore, we propose a lightweight CCA (LW-CCA) as an extension to ContikiMAC to reduce the Radio Duty-Cycles in false WakeUps and idle listening though using dynamic received signal strength indicator (RSSI) status check time. The simulation results in the Cooja simulator show that LW-CCA reduces about 8% energy consumption in nodes while maintaining up to 99% of the packet delivery rate (PDR).
机译:无线传感器网络(WSN)中的无线电操作(IOT)应用程序是功耗最常见的源。因此,识别和控制影响无线电操作的因素对于管理节点功耗可能是有价值的。在影响无线电操作的基本因素中,用于检查无线电的时间对于监测功耗至关重要。它可以导致无线电占空比和Contikimac的错误唤醒或闲置。 Contikimac是在唤醒模式下使用的Contiki OS中的低功率无线电循环协议,作为定期检查无线电状态的清晰通道评估(CCA)。本文提出了对Contikimac的无线电唤醒时间因素的详细分析。此外,我们将轻量级CCA(LW-CCA)提出作为Contikimac的延伸,以减少错误的唤醒和闲置循环,虽然使用动态接收的信号强度指示器(RSSI)状态检查时间,但虽然使用动态接收信号强度指示器(RSSI)状态检查时间。 COOJA模拟器的仿真结果表明,LW-CCA在节点中降低了大约8%的能耗,同时保持了高达99%的数据包传递速率(PDR)。

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