Optimizing WSN lifetime based on a new centrality multi-criteria routing approach

E. H. Fouad, L. Cherkaoui, Douzi Khadija
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引用次数: 4

Abstract

Wireless sensor networks are provided to be the key technology for Internet of Things and a medium between physical infrastructure, information and communication technologies. This requires a constantly growing necessity for efficient energy and resource management of overall sensor network, in order to guarantee a reliable and efficient infrastructure for IoT systems. Routing approaches, especially conceived for wireless sensor networks, diversify according to the application requirements, applied mechanisms and network topology. In this article, a new adaptive and dynamic multi-constraint routing approach is presented. This approach provides a routing mechanism, which create the routing tree based on the evaluation of many criteria. These criteria are combination of two parts; those presented the global aspect of network like the topological metrics (centrality measures, distances) of nodes and those who formed a field representing local metrics like estimated power consumption to reach each directly neighbour and residual energy of each node. These criteria are controlled and supervised dynamically through a detection scheme. In addition, a dynamic selection mechanism based on multi attribute decision-making (MADM) methods is implemented to build and update the routing tree. In response to changes in the network state, criteria and application-defined goals, the elect mechanism provides the best routing neighbour between each node and the Sink.
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基于中心性多准则路由的WSN生存期优化方法
无线传感器网络是物联网的关键技术,是物理基础设施与信息通信技术之间的媒介。这就需要对整个传感器网络进行高效的能源和资源管理,以保证物联网系统的可靠和高效的基础设施。路由方法,特别是为无线传感器网络设计的路由方法,根据应用需求、应用机制和网络拓扑结构而多样化。本文提出了一种新的自适应动态多约束路由方法。这种方法提供了一种路由机制,该机制基于对许多标准的评估来创建路由树。这些标准是两部分的结合;那些表示网络的全局方面,如节点的拓扑度量(中心性度量,距离),以及那些形成一个字段表示局部度量,如到达每个直接邻居的估计功耗和每个节点的剩余能量。通过检测方案对这些标准进行动态控制和监督。此外,实现了基于多属性决策(MADM)方法的动态选择机制来构建和更新路由树。为了响应网络状态、标准和应用程序定义的目标的变化,选择机制在每个节点和Sink之间提供最佳路由邻居。
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