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EAMP-AIDC - energy-aware mac protocol with adaptive individual duty cycle for EH-WSN

机译:EAMP-AIDC-具有自适应EH-WSN占空比的能量感知mac协议

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Network lifetime is the main issue of wireless sensor networks and IoT solutions in real world application. Sensors cannot have an infinite lifetime without battery recharge or replacement. Energy harvesting, from environmental energy sources, is a promising technology to provide sustainable powering for WSN. However, based on harvesting opportunities, nodes power may alternate between two states: a state with sufficient residual power and another with shortage in power. Hence, it is paramount to develop robust networking platforms that are energy-harvesting-aware and that support low-energy consumption and data integrity in a noisy, variable environment. In this paper, we present the EAMP-AIDC protocol, an energy aware MAC protocol for EH-WSN based on individual duty cycle optimization. It takes into consideration nodes' residual energy and application and data requirements in order to define individual dynamic duty cycles (Active and sleep periods) that allow to create a balanced load in term of cooperative data relaying tasks and in terms of energy consumption between the different participating nodes so as to ensure continuous network operation. The proposed protocol was evaluated using the network simulator OMNET++ and was compared to the standard IEEE 802.15.4 MAC. The results showed that EAMP-AIDC protocol outperformed the IEEE 802.15.4 standard in term of better energy consumption, increased survivability in energy savings and in guaranteeing continuous operations.
机译:网络寿命是无线传感器网络和物联网解决方案在实际应用中的主要问题。如果不给电池充电或更换,传感器将无法无限期地使用寿命。来自环境能源的能量收集是一种有前途的技术,可以为WSN提供可持续的电力供应。然而,基于收获机会,节点功率可以在两个状态之间交替:具有足够剩余功率的状态和具有功率不足的状态。因此,至关重要的是要开发强大的联网平台,该平台具有能源收集意识,并在嘈杂的可变环境中支持低能耗和数据完整性。在本文中,我们提出了EAMP-AIDC协议,这是一种基于单个占空比优化的EH-WSN能量感知MAC协议。它考虑了节点的剩余能量以及应用程序和数据要求,以便定义各个动态占空比(活动和睡眠时间段),从而可以在协作数据中继任务以及不同能耗之间创建平衡的负载参与节点,以确保网络连续运行。使用网络模拟器OMNET ++对提出的协议进行了评估,并将其与标准IEEE 802.15.4 MAC进行了比较。结果表明,EAMP-AIDC协议在降低能耗,提高节能性和保证连续运行方面优于IEEE 802.15.4标准。

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