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Underwater channel characterization to design wireless sensor network by Bellhop

机译:水下信道表征以Bellhop设计无线传感器网络

摘要

Acoustic underwater link due to low attenuation is employed for underwater sensor network (UWSN). Due to water changing physical properties and different environmental conditions, the sound propagation for every underwater channel are different. So, the most important parameters to design reliable UWSN are: the shadow zone determination, optimum nodes placement, high signal to noise ratio and more power efficiency of nodes. This paper simulates underwater channel for 7 KHz carrier frequency, with measured physical water properties and remote sensing data. Based on defined scenario, the research determines optimum nodes placement and link budget analysis based on bottom to surface acoustic link. The paper utilizes Bellhop acoustic toolbox as a simulator, GeoMapApp program to collects bathymetry data and Aviso+ database to determine wind speed on sea surface. As a result the paper based on simulation of sound propagation in channel and transmission loss determination in depth and range, finds the optimum nodes positions and link budget calculation to prove the results.
机译:由于低衰减而产生的声学水下链路被用于水下传感器网络(UWSN)。由于水的物理性质发生变化,环境条件不同,每个水下通道的声音传播也不同。因此,设计可靠的UWSN的最重要参数是:阴影区确定,最佳节点放置,高信噪比和更高的节点功率效率。本文模拟了7 KHz载波频率的水下信道,并测量了物理水属性和遥感数据。根据定义的方案,该研究确定最佳的节点位置,并基于底部到表面的声波链路进行链路预算分析。本文利用Bellhop声学工具箱作为模拟器,使用GeoMapApp程序收集测深数据和Aviso +数据库,以确定海面的风速。因此,本文基于信道中声音传播的仿真以及深度和范围内传输损耗的确定,找到最佳节点位置和链路预算计算以证明结果。

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