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首页> 外文期刊>International journal of communication systems >A two-level clustering mechanism for energy enhancement in Internet-of-Things-based wireless sensor networks
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A two-level clustering mechanism for energy enhancement in Internet-of-Things-based wireless sensor networks

机译:基于互联网的无线传感器网络能源增强的两级聚类机制

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摘要

Wireless sensors are considered the key elements in enabling efficient Internet of Things (IoT) networking and services. One of the key objectives in designing a WSN is increasing network lifetime by reducing the overall network energy consumption. To achieve this, several techniques have been proposed to extend the network lifetime, such as clustering. Clustering divides the network into several clusters, each with its own member nodes and a cluster-head (CH) node. In this paper, a novel clustering mechanism is developed with the objective of extending network lifetime through load balancing in wireless sensor networks (WSNs). This is achieved by electing a new node to a provides specific tasks in the WSN to decrease energy consumption and enhance network lifetime. This node is called a relay node that is responsible of delivering the received data packets from the CHs, and then forwards them to the central node (sink). Unlike previous clustering schemes, the proposed algorithm consists of three main processes: CH selection, relay node selection, and medium access control processes. These processes depend on energy level and user's distributions. The performance of the proposed algorithm is investigated through simulation experiments in terms of network lifetime under various network parameters. The results reveal that the proposed mechanism significantly enhances network lifetime compared to previously proposed algorithms.
机译:无线传感器被认为是启用有效的东西(物联网)网络和服务的关键元素。设计WSN的关键目标之一是通过降低整体网络能耗来增加网络寿命。为此,已经提出了几种技术来扩展网络生命周期,例如聚类。群集将网络划分为多个群集,每个群集都有其自己的成员节点和群集头(CH)节点。在本文中,利用无线传感器网络(WSNS)中的负载平衡来扩展网络寿命的目的开发了一种新的聚类机制。这是通过选择新节点来实现的,提供WSN中的特定任务,以降低能量消耗并增强网络生命周期。该节点称为中继节点,其负责从CHS传递接收的数据包,然后将它们转发到中心节点(宿区)。与以前的聚类方案不同,所提出的算法包括三个主要进程:CH选择,中继节点选择和中等访问控制进程。这些过程取决于能级和用户的分布。通过在各种网络参数下的网络寿命方面来研究所提出的算法的性能。结果表明,与先前提出的算法相比,所提出的机制显着提高了网络寿命。

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