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A Dynamic Surface Gateway Placement Scheme for Mobile Underwater Networks

机译:移动水下网络的动态水面网关布置方案

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摘要

Deployment of surface-level gateways holds potential as an effective method to alleviate high-propagation delays and high-error probability in an underwater wireless sensor network (UWSN). This promise comes from reducing distances to underwater nodes and using radio waves to forward information to a control station. In an UWSN, a dynamic energy efficient surface-level gateway deployment is required to cope with the mobility of underwater nodes while considering the remote and three-dimensional nature of marine space. In general, deployment problems are usually modeled as an optimization problem to satisfy multiple constraints given a set of parameters. One previously published static deployment optimization framework makes assumptions about network workload, routing, medium access control performance, and node mobility. However, in real underwater environments, all these parameters are dynamic. Therefore, the accuracy of performance estimates calculated through static UWSN deployment optimization framework tends to be limited by nature. This paper presents the Prediction-Assisted Dynamic Surface Gateway Placement (PADP) algorithm to maximize the coverage and minimize the average end-to-end delay of a mobile underwater sensor network over a specified period. PADP implements the Interacting Multiple Model (IMM) tracking scheme to predict the positions of sensor nodes. The deployment is determined based on both current and predicted positions of sensor nodes, which enables better coverage and shorter end-to-end delay. PADP uses a branch-and-cut approach to solve the optimization problem efficiently, and employs a disjoint-set data structure to ensure connectivity. Simulation results illustrate that PADP significantly outperforms a static gateway deployment scheme.
机译:部署水面网关具有缓解水下无线传感器网络(UWSN)中高传播延迟和高错误概率的有效方法的潜力。这种希望来自减少与水下节点的距离,以及使用无线电波将信息转发到控制站。在UWSN中,在考虑海洋空间的远程和三维特性的同时,需要动态节能表面层网关部署来应对水下节点的移动性。通常,通常将部署问题建模为优化问题,以满足给定一组参数的多个约束。一个以前发布的静态部署优化框架对网络工作量,路由,介质访问控制性能和节点移动性进行了假设。但是,在实际的水下环境中,所有这些参数都是动态的。因此,通过静态UWSN部署优化框架计算的性能估计的准确性往往会受到本质的限制。本文提出了一种预测辅助的动态水面网关布置(PADP)算法,以最大程度地覆盖指定范围内的移动水下传感器网络,并最大程度地降低移动水下传感器网络的平均端到端延迟。 PADP实现了交互多模型(IMM)跟踪方案,以预测传感器节点的位置。根据传感器节点的当前位置和预测位置确定部署,这可以实现更好的覆盖范围和更短的端到端延迟。 PADP使用分支剪切方法有效地解决了优化问题,并采用了不相交的数据结构来确保连通性。仿真结果表明,PADP明显优于静态网关部署方案。

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