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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >Balancing Energy Consumption to Maximize Network Lifetime in Data-Gathering Sensor Networks
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Balancing Energy Consumption to Maximize Network Lifetime in Data-Gathering Sensor Networks

机译:平衡能耗以最大化数据收集传感器网络的网络寿命

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Unbalanced energy consumption is an inherent problem in wireless sensor networks characterized by multihop routing and many-to-one traffic pattern, and this uneven energy dissipation can significantly reduce network lifetime. In this paper, we study the problem of maximizing network lifetime through balancing energy consumption for uniformly deployed data-gathering sensor networks. We formulate the energy consumption balancing problem as an optimal transmitting data distribution problem by combining the ideas of corona-based network division and mixed-routing strategy together with data aggregation. We first propose a localized zone-based routing scheme that guarantees balanced energy consumption among nodes within each corona. We then design an offline centralized algorithm with time complexity O(n) (n is the number of coronas) to solve the transmitting data distribution problem aimed at balancing energy consumption among nodes in different coronas. The approach for computing the optimal number of coronas in terms of maximizing network lifetime is also presented. Based on the mathematical model, an energy-balanced data gathering (EBDG) protocol is designed and the solution for extending EBDG to large-scale data-gathering sensor networks is also presented. Simulation results demonstrate that EBDG significantly outperforms conventional multihop transmission schemes, direct transmission schemes, and cluster-head rotation schemes in terms of network lifetime.
机译:能耗不平衡是无线传感器网络固有的问题,其特点是多跳路由和多对一流量模式,这种不均匀的能耗会大大缩短网络寿命。在本文中,我们研究了通过平衡能量消耗为统一部署的数据收集传感器网络最大化网络寿命的问题。通过结合基于电晕的网络划分和混合路由策略以及数据聚合的思想,将能耗平衡问题表述为最佳的传输数据分配问题。我们首先提出一种基于区域的局部路由方案,该方案可确保每个电晕内各节点之间的能耗平衡。然后,我们设计了时间复杂度为O(n)(n为电晕数)的离线集中式算法,以解决旨在平衡不同电晕中节点之间的能耗的传输数据分配问题。还提出了根据最大化网络寿命来计算最佳电晕数的方法。基于数学模型,设计了能量平衡数据采集(EBDG)协议,并提出了将EBDG扩展到大规模数据采集传感器网络的解决方案。仿真结果表明,EBDG在网络寿命方面显着优于传统的多跳传输方案,直接传输方案和簇头旋转方案。

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