A Novel Centrality Metric for Topology Control in Underwater Sensor Networks

Rodolfo W. L. Coutinho, A. Boukerche, L. Vieira, A. Loureiro
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引用次数: 26

Abstract

In underwater sensor networks, the design of energy efficient and reliable data collection protocols is a daunting challenge. In this context, topology control and opportunistic routing are promising techniques for improving reliability and conserve energy. However, due to the challenges of the underwater acoustic channel, the vast knowledge acquired and the solution proposed so far in the context of terrestrial wireless ad hoc sensor networks cannot be applied directly to underwater acoustic sensor networks. In this work, we shed light on network topology modeling from a routing viewpoint. We model the probabilistic multipath routing behavior driven by opportunistic routing protocols in underwater sensor networks. Afterward, we propose the PCen centrality metric to measure the importance of underwater sensor nodes to the data delivery task through opportunistic routing protocols. PCen is aimed to identify critical nodes that can be used to guide topology control solutions. Our simulation results consider different network densities and reveal the presence of a few number of nodes with high PCen centrality value that will have a high rate of carried traffic, being critical for the network performance.
一种用于水下传感器网络拓扑控制的新颖中心性度量
在水下传感器网络中,设计高效、可靠的数据采集协议是一项艰巨的挑战。在这种情况下,拓扑控制和机会路由是提高可靠性和节约能源的有前途的技术。然而,由于水声信道的挑战,迄今为止在地面无线自组织传感器网络背景下获得的大量知识和提出的解决方案不能直接应用于水声传感器网络。在这项工作中,我们从路由的角度阐明了网络拓扑建模。本文对水下传感器网络中由机会路由协议驱动的概率多径路由行为进行了建模。随后,我们提出了pcn中心性度量来衡量水下传感器节点对通过机会路由协议的数据传输任务的重要性。PCen旨在识别可用于指导拓扑控制解决方案的关键节点。我们的模拟结果考虑了不同的网络密度,并揭示了具有高pcn中心性值的少数节点的存在,这些节点将具有高的承载流量率,对网络性能至关重要。
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