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A Multi-Hop Energy Neutral Clustering Algorithm for Maximizing Network Information Gathering in Energy Harvesting Wireless Sensor Networks

机译:能量收集无线传感器网络中最大化网络信息收集的多跳能量中性聚类算法

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摘要

Energy resource limitation is a severe problem in traditional wireless sensor networks (WSNs) because it restricts the lifetime of network. Recently, the emergence of energy harvesting techniques has brought with them the expectation to overcome this problem. In particular, it is possible for a sensor node with energy harvesting abilities to work perpetually in an Energy Neutral state. In this paper, a Multi-hop Energy Neutral Clustering (MENC) algorithm is proposed to construct the optimal multi-hop clustering architecture in energy harvesting WSNs, with the goal of achieving perpetual network operation. All cluster heads (CHs) in the network act as routers to transmit data to base station (BS) cooperatively by a multi-hop communication method. In addition, by analyzing the energy consumption of intra- and inter-cluster data transmission, we give the energy neutrality constraints. Under these constraints, every sensor node can work in an energy neutral state, which in turn provides perpetual network operation. Furthermore, the minimum network data transmission cycle is mathematically derived using convex optimization techniques while the network information gathering is maximal. Simulation results show that our protocol can achieve perpetual network operation, so that the consistent data delivery is guaranteed. In addition, substantial improvements on the performance of network throughput are also achieved as compared to the famous traditional clustering protocol LEACH and recent energy harvesting aware clustering protocols.
机译:能源限制是传统无线传感器网络(WSN)中的一个严重问题,因为它限制了网络的寿命。近来,能量收集技术的出现带来了克服该问题的期望。特别地,具有能量收集能力的传感器节点有可能在能量中立状态下永久地工作。本文提出了一种多跳能量中性聚类算法(MENC),以构建能量采集无线传感器网络中的最优多跳聚类架构,以实现网络的永续运行。网络中的所有簇头(CH)都充当路由器,以通过多跳通信方法将数据协作地传输到基站(BS)。另外,通过分析集群内和集群间数据传输的能耗,我们给出了能量中立约束。在这些约束下,每个传感器节点都可以在能量中立状态下工作,从而提供永久的网络运行。此外,最小化网络数据传输周期是使用凸优化技术在数学上得出的,而网络信息收集是最大的。仿真结果表明我们的协议可以实现永久的网络运行,从而保证了一致的数据传输。此外,与著名的传统群集协议LEACH和最新的能量收集感知群集协议相比,网络吞吐量的性能也得到了显着提高。

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