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The Analysis of Hops for Multi-hop Cooperation in Underwater Acoustic Sensor Networks

机译:水下声学传感器网络中多跳合作的跳跃分析

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Underwater Acoustic Sensor Networks (UASNs) have recently attracted significant attention for exploration and monitoring in underwater environments. The sensor nodes used in UASNs are powered by batteries that are difficult to recharge or replace. It is imperative that the number of hops deployment in multi-hop networks should be very energy efficient whilst at the same time satisfying necessary delay constraints. In this paper, we firstly analyze the relationship of energy consumption, end-to-end delay and number of hops in a multi-hop UASN, and then we investigate how to optimize the number of hops with a fixed distance in term of trade-offs between energy consumption and end-to-end delay. Then we define a cost function to research the minimum number of hops. Simulation results show that, taking into consideration the energy consumption and end-to-end delay, we can obtain an appropriate number of hops for the multi-hop UASN by adopting co-operation over a given distance. The model obtained in this paper is used to determine the number of hops in an energy efficient UASN for an underwater time-critical mission.
机译:水下声学传感器网络(UASNS)最近引起了在水下环境中的探索和监测的重要关注。 USN中使用的传感器节点由难以充电或更换的电池供电。必须必须在满足必要的延迟约束的同时非常节能的啤酒花部署数量应该非常节奏。在本文中,我们首先分析了多跳UASN中的能量消耗,端到端延迟和跳数的关系,然后我们研究了如何在交易期间优化具有固定距离的跳数 - 能量消耗与端到端延迟之间的关。然后我们定义了研究最小跳数的成本函数。仿真结果表明,考虑到能源消耗和端到端延迟,我们可以通过在给定距离上采用合作来获得多跳UASN的适当数量的跳跃。本文获得的模型用于确定用于水下时间关键任务的节能UASN中的跃点数。

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