Energy optimization with delay constraints in Underwater Acoustic Networks

Poongovan Ponnavaikko, K. Yassin, Sarah Kate Wilson, M. Stojanovic, J. Holliday
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引用次数: 12

Abstract

Underwater Acoustic Sensor Networks find use in critical time-sensitive applications such as disaster prevention and coastline protection. The sensor nodes used in such networks are powered by batteries that are difficult to recharge or replace. Hence it is imperative that routing algorithms used in such networks be very energy efficient while also satisfying necessary delay constraints for time-sensitive applications. Unlike the radio frequency medium, underwater acoustic channels have low bandwidth, large propagation delays and long multipath delay spreads. While energy-efficient routing is an actively researched area for terrestrial radio frequency networks, results from those studies generally do not apply to underwater acoustic networks due to vast differences in channel characteristics. In this paper we explore delay-constrained energy optimization for routing in underwater acoustic sensor networks. Specifically, we propose an offline Mixed Integer Linear Programming based routing algorithm that enables computation of delay constrained energy efficient routes.
具有延迟约束的水声网络能量优化
水声传感器网络可用于对时间敏感的关键应用,如防灾和海岸线保护。这种网络中使用的传感器节点由难以充电或更换的电池供电。因此,在这种网络中使用的路由算法必须非常节能,同时还要满足时间敏感应用的必要延迟约束。与射频介质不同,水声信道具有低带宽、大传播延迟和长多径延迟传播。虽然节能路由是陆地射频网络的一个积极研究领域,但由于信道特性的巨大差异,这些研究的结果通常不适用于水声网络。本文研究了水声传感器网络路由的时延约束能量优化问题。具体而言,我们提出了一种基于离线混合整数线性规划的路由算法,该算法能够计算延迟约束的节能路由。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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