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A Self-Adaptive Sleep/Wake-Up Scheduling Approach for Wireless Sensor Networks
IEEE Transactions on Cybernetics ( IF 9.4 ) Pub Date : 2017-03-03 , DOI: 10.1109/tcyb.2017.2669996
Dayong Ye , Minjie Zhang

Sleep/wake-up scheduling is one of the fundamental problems in wireless sensor networks, since the energy of sensor nodes is limited and they are usually unrechargeable. The purpose of sleep/wake-up scheduling is to save the energy of each node by keeping nodes in sleep mode as long as possible (without sacrificing packet delivery efficiency) and thereby maximizing their lifetime. In this paper, a self-adaptive sleep/wake-up scheduling approach is proposed. Unlike most existing studies that use the duty cycling technique, which incurs a tradeoff between packet delivery delay and energy saving, the proposed approach, which does not us duty cycling, avoids such a tradeoff. The proposed approach, based on the reinforcement learning technique, enables each node to autonomously decide its own operation mode (sleep, listen, or transmission) in each time slot in a decentralized manner. Simulation results demonstrate the good performance of the proposed approach in various circumstances.

中文翻译:


无线传感器网络的自适应睡眠/唤醒调度方法



睡眠/唤醒调度是无线传感器网络的基本问题之一,因为传感器节点的能量是有限的并且通常是不可充电的。睡眠/唤醒调度的目的是通过使节点尽可能长时间地处于睡眠模式(不牺牲数据包传送效率)来节省每个节点的能量,从而最大化其生命周期。本文提出了一种自适应睡眠/唤醒调度方法。与大多数使用占空比技术的现有研究不同,该技术会在数据包传输延迟和节能之间进行权衡,而所提出的方法不使用占空比,避免了这种权衡。所提出的方法基于强化学习技术,使每个节点能够以分散的方式在每个时隙中自主决定自己的操作模式(睡眠、监听或传输)。仿真结果证明了所提出的方法在各种情况下的良好性能。
更新日期:2017-03-03
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