基于平衡的无线传感器网络节能通信协议

Yu Wang, Hongyi Wu, R. Nelavelli, N. Tzeng
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引用次数: 13

摘要

在无线传感器网络中,能源效率是一个关键的设计问题,在无线传感器网络中,每个传感器节点都依赖于其有限的电池电量来进行数据采集、处理、传输和接收。在本文中,我们提出了几种基于功率控制和负载均衡的节能通信方案,旨在均匀分配传感器的剩余能量,从而延长整个无线传感器网络的寿命。具体地说,针对时间驱动传感器网络,提出了整数线性规划(ILP)算法和分布式能效路由(DEER)协议。针对事件驱动传感器网络,提出了一种基于剩余能量的流量分割(RETS)协议。我们已经进行了大量的模拟来评估提议的协议。我们的模拟结果表明,大多数启发式方法产生的网络寿命远小于从ILP算法得到的上限。与文献中其他方法相比,本文提出的DEER和RETS方法可以有效地将能量消耗均匀地分布在传感器节点之间,使网络寿命延长200%或更多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Balance-Based Energy-Efficient Communication Protocols forWireless Sensor Networks
Energy efficiency is a critical design issue in wireless sensor networks, where each sensor node relies on its limited battery power for data acquisition, processing, transmission, and reception. In this paper, we propose several energy-efficient communication schemes based on power control and load balancing, aiming at even distribution of the residual energy of the sensors and thus prolonging the lifetime of overall wireless sensor networks. More specifically, an Integer Linear Programming (ILP) algorithm and a Distributed Energy Efficient Routing (DEER) protocol are proposed for time-driven sensor networks. A Residual Energy-based Traffic Splitting (RETS) protocol is introduced for event-driven sensor networks. We have carried out extensive simulations to evaluate the proposed protocols. Our simulation results show that most heuristic approaches yield network lifetimes far smaller than the upper bound obtained from the ILP algorithm. The proposed DEER and RETS approaches can effectively distribute energy consumption evenly among the sensor nodes to prolong the network lifetime by up to 200% or more, when compared with other approaches in the literature.
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