Selective-path clustered-based routing protocol for large scale wireless sensor networks

O. Ogundile, M. Oloyede, O. Osanaiye, E. Falayi, A. A. Okusanya
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引用次数: 1

Abstract

Wireless sensor networks (WSNs) consist of large number of small low-powered electronic sensor devices. Therefore, reliable power saving schemes must be developed in order to manage the energy dissipated and extend the network life and functionality for a meaningful time. Arranging sensor nodes (SNs) into clusters has been viewed as an efficient approach of balancing the energy dissipated in WSNs. Regardless, a clustered WSN needs a robust energy efficient (EE) and energy balanced (EB) routing communication protocol. This paper proposes a selective-path priority table (SPT) EE and EB routing protocol (RP) ideal for most conventional clustering algorithms. The SPT RP forms the priority table by prioritising the k nearest multi-hop paths to the cluster heads (CHs) and/or base station (BS) based on some robust rules. These rules are compiled using a combination of some routing metrics which include the residual energy (RE) and transmission range/power. Firstly, the simulation results indicate that the SPT RP can be combined with most of the conventional clustering algorithm irrespective of the number of deployed SNs. Secondly, the performance of the SPT RP improves as the value of the selected number of routing paths (k) increase. More so, the simulation results show that the SPT RP reduces the energy dissipated and can prolong the network life and throughput as compared to related routing schemes.
大规模无线传感器网络的选择路径聚类路由协议
无线传感器网络是由大量小型、低功耗的电子传感器组成的网络。因此,必须开发可靠的节能方案,以管理耗散的能量,延长网络的寿命和功能。将传感器节点排列成簇被认为是平衡传感器网络能量耗散的有效方法。无论如何,集群WSN需要一个鲁棒的能量高效(EE)和能量均衡(EB)路由通信协议。本文提出了一种适合大多数传统聚类算法的选择路径优先级表(SPT) EE和EB路由协议(RP)。SPT RP根据一些鲁棒规则对距离簇头(CHs)和/或基站(BS)最近的k个多跳路径进行优先级排序,从而形成优先级表。这些规则是使用一些路由指标的组合来编译的,这些指标包括剩余能量(RE)和传输范围/功率。首先,仿真结果表明,无论部署的SNs数量多少,SPT RP都可以与大多数传统聚类算法相结合。其次,SPT RP的性能随着所选路由路径数(k)的增加而提高。仿真结果表明,与其他路由方案相比,SPT RP减少了能量的消耗,延长了网络的寿命和吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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