Improving the AODV-based ZigBee routing protocol through pivots

N. Rachkidy, A. Guitton, C. Buratti
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引用次数: 4

Abstract

Wireless sensor networks are often deployed for monitoring purposes: when nodes detect the occurrence of a significant event, they transmit an information to a control entity in a multi-hop fashion. When data rate increases, congestion becomes a fundamental issue, especially when an emergency situation generates alarm messages originating from a specific area of the network. Indeed, congestion increases delays and packet losses, and yields to an unfair use of the energy of nodes. In this paper, we propose to improve the ZigBee routing protocol, aiming at reducing traffic congestion. The proposed solution uses intermediate nodes, denoted as pivots, which are selected by the data sources in order to reduce congestion on paths. Simulation results highlight the significant improvement achieved in terms of packet losses and average delays, with respect to the ZigBee routing protocol, while the overhead generated in the network is maintained under control. A mathematical model to derive the average path length and the number of pivots is also provided.
通过枢纽改进基于aodv的ZigBee路由协议
无线传感器网络通常用于监控目的:当节点检测到重大事件发生时,它们以多跳方式向控制实体传输信息。当数据速率增加时,拥塞成为一个基本问题,特别是当紧急情况产生来自网络特定区域的告警消息时。事实上,拥塞增加了延迟和数据包丢失,并导致节点能量的不公平使用。在本文中,我们提出了改进ZigBee路由协议,旨在减少流量拥塞。提出的解决方案使用中间节点,表示为枢纽,这些节点由数据源选择,以减少路径上的拥塞。仿真结果强调了ZigBee路由协议在丢包和平均延迟方面取得的显著改进,同时保持了对网络中产生的开销的控制。给出了计算平均路径长度和支点个数的数学模型。
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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