Multipath Virtual Sink Architecture for Underwater Sensor Networks

W. Seah, H. Tan
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引用次数: 120

Abstract

The salient features of acoustic communications render many schemes that have been designed for terrestrial sensor networks unusable underwater. We therefore propose a novel virtual sink architecture for underwater sensor networks that aims to achieve robustness and energy efficiency under harsh underwater channel conditions. To overcome the long propagation delay and adverse link conditions in such environments, we make use of multipath data delivery. While conventional multipath routing tends to lead to contention near the sink, we avoid this caveat with the virtual sink design involving a group of spatially diverse physical sinks. Hence, we are able to exploit the reliability achieved from redundancy provided by multipath data delivery while mitigating the contention between the nodes.
水下传感器网络的多路径虚拟汇结构
声学通信的显著特点使得许多为地面传感器网络设计的方案在水下无法使用。因此,我们提出了一种新的水下传感器网络虚拟汇架构,旨在实现在恶劣水下信道条件下的鲁棒性和能量效率。为了克服这种环境下的长传播延迟和不利的链路条件,我们使用了多路径数据传输。虽然传统的多路径路由倾向于导致汇聚点附近的争用,但我们使用涉及一组空间上不同的物理汇聚点的虚拟汇聚点设计来避免这种警告。因此,我们能够利用多路径数据传递提供的冗余实现可靠性,同时减轻节点之间的争用。
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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