两层无线传感器网络中改进中继节点布置

B. Zafar, Z. H. Mir, S. Shams, M. Ikram, W. A. Baig, Ki-Hyung Kim, S. Yoo
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引用次数: 7

摘要

在无线传感器网络(WSNs)中,能量是一种稀缺资源,为了提高网络的生存时间,必须有效地利用能量。为了提高网络的寿命,提出了两层无线传感器网络(TT-WSN)架构。在TT-WSN中,下层由传感器节点(SN)组成,主要负责感知环境并将数据转发给它的一跳邻居中继节点(RN)。而上层则由功率更丰富的中继节点(RNs)组成,它以多跳方式通过可能连接的多个中继节点将数据传递到基站。由于中继节点较昂贵,因此希望部署最少数量的中继节点,使每个传感器节点至少有一个中继节点作为其一跳邻居,并且所有中继节点形成一个连接的网络。不幸的是,找到这样一个最小中继节点集的问题是NP-Hard。因此,需要一种基于近似的算法来在多项式时间内解决问题。现有的解决方案要么非常复杂,要么效率较低。本文提出了一种快速逼近算法,在多项式时间内求解该问题。通过仿真,将该算法的性能与现有算法进行了比较。大量的仿真结果表明,我们的算法在中继节点部署数量方面优于现有算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On improved relay nodes placement in Two-Tiered Wireless Sensor Networks
In Wireless Sensor Networks (WSNs) energy is a scarce resource which must be utilized efficiently in order to enhance the network lifetime. Two-Tiered Wireless Sensor Network (TT-WSN) architecture is proposed to improve the lifetime longevity of the network. In TT-WSN the lower tier consists of sensor nodes (SN), which are mainly responsible for sensing the environment and forwarding the data to its one hop neighbor relay node (RN). While the upper tier is constituent of more power affluent relay nodes (RNs), which deliver the data to the base station through potentially multiple connected relay nodes in a multi-hop fashion. As relay nodes are more expensive, it is therefore desirable to deploy a minimum number of such nodes so that every sensor node has at least one relay node as its one-hop neighbor and all the relay nodes form a connected network. Unfortunately the problem of finding such a minimum set of relay nodes is NP-Hard. Thus an approximation based algorithm is required to solve the problem in polynomial time. Existing solutions are either very complex or less efficient. In this paper we present a fast approximation algorithm to solve the problem in polynomial time. The performance of the algorithm is compared with the existing algorithms through simulations. The extensive simulation results show that our algorithm outperforms the existing algorithms in terms of number of relay nodes deployed.
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