Energy-balance routing and throughput maximization for wireless sensor networks

N. Purushothaman, V. Saminadan
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引用次数: 5

Abstract

Several studies have demonstrated the benefits of using a mobile sink to reduce the energy consumption of nodes and to prevent the formation of energy holes in wireless sensor networks (WSNs). However, these benefits are dependent on the path taken by the mobile sink, particularly in delay-sensitive applications, as all sensed data must be collected within a given time constraint. WSN consists of low-cost nodes with limited battery power, and the battery replacement is not easy for WSN with thousands of physically embedded nodes, which means energy efficient routing protocol should be employed to offer a long-life work time. To achieve the aim, we need not only to minimize total energy consumption but also to balance WSN load. In this paper, we propose a General Self-Organized Tree-Based Energy-Balance routing protocol (GSTEB) which builds a routing tree using a process where, for each round, BS assigns a root node and broadcasts this selection to all sensor nodes. Subsequently, each node selects its parent by considering only itself and its neighbors' information, thus making GSTEB a dynamic protocol. Simulation results show that GSTEB has a better performance than other protocols in balancing energy consumption, thus prolonging the lifetime of WSN.
无线传感器网络的能量平衡路由和吞吐量最大化
一些研究表明,在无线传感器网络(WSNs)中,使用移动接收器可以减少节点的能量消耗并防止形成能量洞。然而,这些好处取决于移动接收器所采取的路径,特别是在延迟敏感的应用程序中,因为所有感测数据必须在给定的时间限制内收集。无线传感器网络由低成本节点和有限的电池电量组成,并且对于物理嵌入数千个节点的无线传感器网络来说,电池更换不容易,这意味着需要采用节能的路由协议来提供长寿命的工作时间。为了实现这一目标,我们不仅需要最小化总能耗,还需要平衡无线传感器网络的负载。在本文中,我们提出了一种基于通用自组织树的能量平衡路由协议(GSTEB),该协议使用一个过程构建路由树,其中,对于每一轮,BS分配一个根节点并将此选择广播给所有传感器节点。随后,每个节点只考虑自己和邻居的信息来选择自己的父节点,从而使GSTEB成为一个动态协议。仿真结果表明,GSTEB在平衡能量消耗方面比其他协议具有更好的性能,从而延长了WSN的寿命。
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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