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Scalable and Robust Scheme for Data Gathering in Sensor Networks

机译:传感器网络中数据收集的可扩展和鲁棒方案

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摘要

In wireless sensor networks, hundreds or thousands of mi-crosensors are deployed in an uncontrolled way to monitor and gather information of environments. Sensor nodes have limited power, computational capacities, memory, and communication capability. In this paper, we propose a novel scheme for data gathering where sensor information periodically propagates without any centralized control from the edge of a sensor network to a base station as the propagation forms a concentric circle. By observing the radio signals emitted by sensor nodes in its vicinity, a sensor node independently determines the cycle and the timing at which it emits sensor information in synchrony. For this purpose, we adopt a pulse-coupled oscillator model based on biological mutual synchronization such as that used by flashing fireflies, chirping crickets, and pacemaker cells. Through simulation experiments, we confirmed that our scheme can gather sensor information in a fully-distributed, self-organizing, robust, adaptable, scalable, and energy-efficient manner.
机译:在无线传感器网络中,以不受控制的方式部署了数百或数千个微型传感器,以监视和收集环境信息。传感器节点的功能,计算能力,内存和通信能力有限。在本文中,我们提出了一种新的数据收集方案,其中传感器信息周期性地传播,而无需任何集中控制即可将传感器信息从传感器网络的边缘传播到基站,因为传播形成了同心圆。通过观察附近的传感器节点发出的无线电信号,传感器节点可以独立地确定其同步发出传感器信息的周期和时间。为此,我们采用了基于生物相互同步的脉冲耦合振荡器模型,例如萤火虫闪烁,chi鸣叫和起搏器细胞所使用的模型。通过仿真实验,我们证实了我们的方案可以以完全分布式,自组织,健壮,适应性强,可伸缩和节能的方式收集传感器信息。

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