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Energy analysis of routing protocols for underwater wireless sensor networks

机译:水下无线传感器网络路由协议的能量分析

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Underwater wireless sensor networks consist of a certain number of sensors and vehicles that interact to collect data and perform collaborative tasks. Designing energy-efficient routing protocols for this type of networks is essential and challenging because sensor nodes are powered by batteries, which are difficult to replace or recharge, and because underwater communications are severely affected by network dynamics, large propagation delays and high error probability of acoustic channels. The goal of this paper is to analyze the total energy consumption in underwater acoustic sensor networks considering two different scenarios: shallow water and deep water. We propose different basic functioning principles for routing protocols in underwater wireless sensor networks (relaying, direct transmission and clustering) and analyze the total energy consumption for each case, establishing a comparison between them.
机译:水下无线传感器网络由一定数量的传感器和车辆组成,它们相互作用以收集数据并执行协作任务。为此类网络设计节能路由协议至关重要且具有挑战性,因为传感器节点由电池供电,难以更换或充电,并且水下通信受到网络动力学,较大的传播延迟和高错误概率的严重影响。声音通道。本文的目的是分析浅水和深水两种不同情况下的水下声传感器网络的总能耗。我们为水下无线传感器网络中的路由协议(中继,直接传输和群集)提出了不同的基本功能原理,并分析了每种情况的总能耗,并进行了比较。

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