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Mobile data gathering and energy harvesting in rechargeable wireless sensor networks

机译:可充电无线传感器网络中的移动数据收集和能量收集

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In this paper, we study the joint data gathering and energy harvesting (JoDGE) problem in rechargeable wireless sensor networks (RWSNs) with a mobile sink. In RWSNs, the sensor nodes are equipped with RF circuit to harvest energy from a mobile sink that moves along a pre-defined path, and at the same time, transmit gathered sensor data to the sink. Given that the consumed and harvested energy at a sensor node is proportional and inversely proportional to the square of transmission distance, a far-relay approach is proposed to select the sensor nodes closer to the path to assist the data transmission of the farther sensor nodes. Under the far-relay approach, we formulate a network utility maximization problem (NUM), and propose an optimal scheduling scheme (Opt JoDGE), which jointly considers the power allocation, relay selection and time slot scheduling policies. By employing the Lyapunov drift theory, a near optimal buffer-battery-aware adaptive scheduling (NO-BBA) scheme is further proposed, in which the run-time status of the data buffer and battery are utilized. Extensive simulation experiments validate the feasibility and performance of JoDGE and NO-BBA. The results show that the performance of NO-BBA is close to that of Opt-JoDGE, especially when a certain delay is tolerable. (C) 2019 Elsevier Inc. All rights reserved.
机译:在本文中,我们使用移动水槽研究可充电无线传感器网络(RWSNS)的联合数据收集和能量收集(Jodge)问题。在RWSN中,传感器节点配备有RF电路,以从沿预定路径移动的移动接收器收集能量,并且同时将收集的传感器数据发送到接收器。鉴于传感器节点处的消耗和收获的能量与传输距离的平方成比例和成反比,提出了远程中继方法以选择更靠近路径的传感器节点以帮助更远的传感器节点的数据传输。在远 - 中继方法下,我们制定了网络实用程序最大化问题(NUM),并提出了一个最佳调度方案(OPT Jodge),该方案(opt Jodge)共同考虑功率分配,中继选择和时隙调度策略。通过采用Lyapunov漂移理论,进一步提出了一种近最佳缓冲电池感知自适应调度(No-BBA)方案,其中使用数据缓冲器和电池的运行时间状态。广泛的仿真实验验证了Jodge和No-BBA的可行性和性能。结果表明,NO-BBA的性能接近Opt-Jodge的性能,特别是当某个延迟是可容忍的时。 (c)2019 Elsevier Inc.保留所有权利。

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