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EZ-SEP: Extended Z-SEP Routing Protocol with Hierarchical Clustering Approach for Wireless Heterogeneous Sensor Network

机译:EZ-SEP:扩展Z-SEP路由协议具有用于无线异构传感器网络的分层聚类方法

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摘要

Wireless sensor networks (WSN) are networks of thousands of nodes installed in a defined physical environment to sense and monitor its state condition. The viability of such a network is directly dependent and limited by the power of batteries supplying the nodes of these networks, which represents a disadvantage of such a network. To improve and extend the life of WSNs, scientists around the world regularly develop various routing protocols that minimize and optimize the energy consumption of sensor network nodes. This article, introduces a new heterogeneous-aware routing protocol well known as Extended Z-SEP Routing Protocol with Hierarchical Clustering Approach for Wireless Heterogeneous Sensor Network or EZ-SEP, where the connection of nodes to a base station (BS) is done via a hybrid method, i.e., a certain amount of nodes communicate with the base station directly, while the remaining ones form a cluster to transfer data. Parameters of the field are unknown, and the field is partitioned into zones depending on the node energy. We reviewed the Z-SEP protocol concerning the election of the cluster head (CH) and its communication with BS and presented a novel extended mechanism for the selection of the CH based on remaining residual energy. In addition, EZ-SEP is weighted up using various estimation schemes such as base station repositioning, altering the field density, and variable nodes energy for comparison with the previous parent algorithm. EZ-SEP was executed and compared to routing protocols such as Z-SEP, SEP, and LEACH. The proposed algorithm performed using the MATLAB R2016b simulator. Simulation results show that our proposed extended version performs better than Z-SEP in the stability period due to an increase in the number of active nodes by 48%, in efficiency of network by the high packet delivery coefficient by 16% and optimizes the average power consumption compared to by 34.
机译:无线传感器网络(WSN)是在定义的物理环境中安装的数千个节点的网络,以感测和监控其状态条件。这种网络的可行性直接依赖和受供应这些网络的节点的电池的功率限制,这代表了这种网络的缺点。为了提高和延长WSN的生活,世界各地的科学家定期开发各种路由协议,最小化和优化传感器网络节点的能耗。本文介绍了一种新的异构感知路由协议,该协议很好地称为扩展Z-SEP路由协议,具有用于无线异构传感器网络的分层聚类方法或EZ-SEP,其中节点的连接到基站(BS)是通过A完成的混合方法,即,一定量的节点直接与基站通信,而剩余的节点形成群集以传送数据。字段的参数未知,该字段根据节点能量分区为区域。我们审查了关于聚集头(CH)选举的Z-SEP协议及其与BS的通信,并提出了基于剩余的残余能量选择CH的新型扩展机制。另外,使用诸如基站重新定位的各种估计方案来加权EZ-SEP,改变场浓度和可变节点能量,以便与先前的父算法进行比较。执行并将EZ-SEP执行并与Z-SEP,SEP等路由协议进行比较。使用MATLAB R2016B模拟器执行的所提出的算法。仿真结果表明,由于高频节点的数量增加了48%,我们所提出的扩展版本在稳定时段中表现优于z-Sep,以高分分量递送系数为16%,通过高分性节点的效率增加了48%,优化了平均功率消费与34相比。

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