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Dynamic Duty-Cycle Scheduling Schemes for Energy-Harvesting Wireless Sensor Networks

机译:能量收集无线传感器网络的动态占空比调度方案

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摘要

In this letter, we propose two novel dynamic duty-cycle scheduling schemes (called DSR and DSP) in order to reduce sleep latency, while achieving balanced energy consumption among sensor nodes in wireless sensor networks (WSNs) with energy harvesting capability. In DSR, each sensor node is allowed to adjust its duty-cycle according to the current amount of residual energy only. Since the residual energy of nodes in energy-harvesting WSNs can increase over time due to their harvesting opportunity, the estimation of prospective increase in their residual energy is useful to achieve our goal. Hence, DSP allows each of sensor nodes to reduce its duty-cycle more aggressively in proportion to such an increase. Through NS-2 simulations, we verified that our proposed schemes outperform the duty-cycle scheduling scheme used in a representative existing MAC protocol such as RI-MAC.
机译:在这封信中,我们提出了两种新颖的动态占空比调度方案(称为DSR和DSP),以减少睡眠等待时间,同时在具有能量收集功能的无线传感器网络(WSN)的传感器节点之间实现均衡的能耗。在DSR中,仅允许每个传感器节点根据当前的剩余能量来调整其占空比。由于能量收集WSN中节点的剩余能量可能会由于其收获机会而随时间增加,因此估计它们的剩余能量的预期增加量对于实现我们的目标很有用。因此,DSP允许每个传感器节点与这种增加成比例地更积极地降低其占空比。通过NS-2仿真,我们验证了我们提出的方案优于具有代表性的现有MAC协议(如RI-MAC)中使用的占空比调度方案。

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