基于优先级的多sink医疗传感器网络容错节能路由方案

A. Saeed, A. Stranieri, Richard Dazeley
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引用次数: 3

摘要

无线传感器网络(WSNs)广泛应用于战场、后勤、医疗、栖息地监测、环境监测、家庭安防等各种领域。现有的路由算法侧重于使用最短路径将数据包发送到接收器;然而,在将感兴趣的数据集传播到最近的汇聚节点时,计算最短路径并不是一个经济有效的解决方案。本文提出了一种新的基于优先级的容错多路径路由(FT-MPPBR)方案,在现有的基于优先级的路由协议的基础上进行了扩展,该方案不仅平衡了选择多条路径时的能量消耗,而且平衡了离sink最近的节点的工作负载。靠近接收器的节点消耗更多的能量,并可能成为通信瓶颈的来源。仿真结果表明,FT-MPPBR在延长网络生存期和可靠性方面优于现有的策略路由方案。在医疗保健传感器网络中,数据集的及时传播对患者的健康至关重要。本研究进一步扩展了PBR架构,通过将感兴趣的数据集传输到传感器网格节点来支持计算密集型分析,从而改善通信和提高吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault-Tolerant Energy-Efficient Priority-Based Routing Scheme for the Multisink Healthcare Sensor Networks
Wireless sensor networks (WSNs) are widely used in battle fields, logistic applications, healthcare, habitat monitoring, environmental monitoring, home security, and variety of other areas. The existing routing algorithms focus on the delivery of data packets to the sink using the shortest path; however, calculating the shortest path is not a cost-effective solution while disseminating datasets of interest to the nearest sink node. The approach presented in this paper extends the existing PBR (priority-based routing) protocol by providing a new fault-tolerant multipath priority-based routing (FT-MPPBR) scheme, which not only balances the energy consumption while selecting multiple paths but also balances the workload of the node closest to the sink. The nodes closer to the sink dissipate more energy and can become the source of a communication bottleneck. Simulation results for the proposed routing scheme are encouraging and clearly show that the FT-MPPBR has outperformed the existing PBR schemes in terms of prolonging the network lifetime and reliability. In healthcare sensor networks, timely dissemination of datasets is critical for the well-being of a patient. This research further extends the PBR architecture for supporting computational intensive analysis by transferring datasets of interest to the sensor grid node for improved communication and better throughput.
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