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An Eccentricity Based Data Routing Protocol with Uniform Node Distribution in 3D WSN

机译:3D WSN中具有均匀节点分布的基于偏心率的数据路由协议

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摘要

Due to nonuniform node distribution, the energy consumption of nodes are imbalanced in clustering-based wireless sensor networks (WSNs). It might have more impact when nodes are deployed in a three-dimensional (3D) environment. In this regard, we propose the eccentricity based data routing (EDR) protocol in a 3D WSN with uniform node distribution. It includes network partitions called 3D subspaces/clusters of equal member nodes, an energy-efficient routing centroid (RC) nodes election and data routing algorithm. The RC nodes election conducts in a quasi-static nature until a certain period unlike the periodic cluster heads election of typical clustering-based routing. It not only reduces the energy consumption of nodes during the election phase, but also in intra-communication. At the same time, the routing algorithm selects a forwarding node in such a way that balances the energy consumption among RC nodes and reduces the number of hops towards the sink. The simulation results validate and ensure the performance supremacy of the EDR protocol compared to existing protocols in terms of various metrics such as steady state and network lifetime in particular. Meanwhile, the results show the EDR is more robust in uniform node distribution compared to nonuniform.
机译:由于节点分布不均匀,因此在基于群集的无线传感器网络(WSN)中节点的能耗不平衡。当节点部署在三维(3D)环境中时,它可能会产生更大的影响。在这方面,我们提出了在具有均匀节点分布的3D WSN中基于偏心率的数据路由(EDR)协议。它包括称为相等成员节点的3D子空间/群集的网络分区,节能路由质心(RC)节点选举和数据路由算法。 RC节点的选举以准静态的方式进行,直到一定时期,这与典型的基于群集的路由的定期簇头选举不同。它不仅减少了选举阶段节点的能耗,而且还减少了内部通信的能耗。同时,路由算法选择一种转发节点,以平衡RC节点之间的能量消耗并减少到宿的跳数。仿真结果验证并确保了EDR协议与现有协议相比在各种指标(例如稳态和网络生存期)方面具有至高无上的优势。同时,结果表明,EDR在节点均匀分布方面比非均匀性更强。

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