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Joint Mobile Data Collection and Wireless Energy Transfer in Wireless Rechargeable Sensor Networks

机译:无线可充电传感器网络中的联合移动数据收集和无线能量传输

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摘要

In wireless rechargeable sensor networks (WRSNs), there is a way to use mobile vehicles to charge node and collect data. It is a rational pattern to use two types of vehicles, one is for energy charging, and the other is for data collecting. These two types of vehicles, data collection vehicles (DCVs) and wireless charging vehicles (WCVs), are employed to achieve high efficiency in both data gathering and energy consumption. To handle the complex scheduling problem of multiple vehicles in large-scale networks, a twice-partition algorithm based on center points is proposed to divide the network into several parts. In addition, an anchor selection algorithm based on the tradeoff between neighbor amount and residual energy, named AS-NAE, is proposed to collect the zonal data. It can reduce the data transmission delay and the energy consumption for DCVs’ movement in the zonal. Besides, we design an optimization function to achieve maximum data throughput by adjusting data rate and link rate of each node. Finally, the effectiveness of proposed algorithm is validated by numerical simulation results in WRSNs.
机译:在无线可充电传感器网络(WRSN)中,有一种使用移动车辆为节点充电和收集数据的方法。使用两种类型的车辆是一种合理的模式,一种用于充电,另一种用于数据收集。数据收集车(DCV)和无线充电车(WCV)这两种类型的车辆用于在数据收集和能耗方面实现高效率。为了解决大规模网络中多车辆的复杂调度问题,提出了一种基于中心点的二次分割算法,将网络分为几部分。此外,提出了一种基于邻居量和剩余能量之间折衷的锚定选择算法,称为AS-NAE,以收集区域数据。它可以减少DCV在区域内移动的数据传输延迟和能耗。此外,我们设计了一个优化功能,通过调整每个节点的数据速率和链接速率来实现最大的数据吞吐量。最后,通过WRSN中的数值仿真结果验证了所提算法的有效性。

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