水下传感器网络的地面无线辅助机会路由

Miaomiao Liu, Fei Ji, Q. Guan, Hua Yu, Fangjiong Chen, G. Wei
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引用次数: 9

摘要

恶劣的水下环境给水下传感器网络(USNs)带来了挑战,水下传感器网络将水下传感器的传感数据收集到陆地上的接收器。时变水声信道带宽低,误码率高,导致数据采集效率低。此外,usn的异构模型在水下使用声学通信,在水上使用无线通信,这使得数据收集的有效路由和转发变得困难。为此,我们提出了一种用于usn的新型地面无线辅助机会路由(SurOpp)。SurOpp在海面上部署多个浮标节点,并将所有浮标节点都纳入转发候选节点,形成接收分集。利用浮标节点接收和转发的机会,改进端到端传输。SurOpp还在源端采用无速率码,以实现在汇端的机会接收。浮标和水槽的机会接收合作进一步减少了头顶上的控制信息。浮标中的无线接口承担转发协调中的所有报文交换,以补偿声道的带宽限制。在NS3中的仿真结果表明,SurOpp在分组传送率、端到端延迟和能量消耗方面都优于传统路由和现有机会路由。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On-surface wireless-assisted opportunistic routing for underwater sensor networks
The harsh environment in the water has imposed challenges for underwater sensor networks (USNs), which collect the sensed data from the underwater sensors to the sink on land. The time-varying underwater acoustic channel has low band-width and high bit error rate, which leads to low data collection efficiency. Furthermore, the heterogeneous model of USNs that uses acoustic communications under the water and wireless communication above the water makes it difficult in efficient routing and forwarding for data collection. To this end, we propose a novel on-surface wireless-assisted opportunistic routing (SurOpp) for USNs. SurOpp deploys multiple buoy nodes on surface and includes all of them in the forwarding candidates to form a receive diversity. The opportunities of reception and forwarding in buoy nodes are exploited to improve the end-to-end transmissions. SurOpp also adopts rateless codes in the source to achieve opportunistic reception in the sink. The cooperation of both opportunistic reception in the buoys and the sink further decreases the messages of control overhead. The wireless interface in the buoy undertakes all the message exchanges in forwarding coordination to compensate the bandwidth limit of the acoustic channel. Simulations in NS3 show that SurOpp outperforms the traditional routing and existing opportunistic routing in terms of packet delivery ratio, end-to-end delay and energy consumption.
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