Localization and mobility of underwater acoustic sensor nodes

Vignesh Mandalapa Bhoopathy, Mohamed Ben Haj Frej, Steve Richard Ebenezer Amalorpavaraj, Imran K. Shaik
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引用次数: 10

Abstract

The Underwater Acoustic Sensor Network (UASN) is a network which consists of underwater wireless sensor nodes distributed randomly over the certain area of observation and communicate with each other using acoustic signals. UASN can be used in a wide variety of underwater applications, ranging from marine biology surveillance to earthquake and tsunami alert applications. Despite the fact that sensor networks are meant to collect data, in some applications, collection of data without a location of the occurrence becomes incoherent. Hence, localization for UASN has become an enthralling research topic in the recent years. However, there are several disadvantages of acoustic channel like propagation delay, limited energy sources, high bit error rate, and limited harvesting techniques underwater make the localization of UASN very challenging. Therefore, in this paper we have proposed a distributed localization scheme which employs two-way time of arrival estimation method to calculate distance and avoid the requirement of time synchronization
水声传感器节点的定位与移动
水声传感器网络(UASN)是由随机分布在一定观测区域的水下无线传感器节点组成的网络,这些节点利用水声信号相互通信。usasn可用于各种水下应用,从海洋生物监测到地震和海啸警报应用。尽管传感器网络旨在收集数据,但在某些应用中,没有发生位置的数据收集变得不连贯。因此,usasn的本地化已成为近年来一个引人注目的研究课题。然而,声信道存在传播延迟、能量来源有限、误码率高、水下采集技术有限等缺点,使得UASN的定位非常具有挑战性。因此,本文提出了一种采用双向到达时间估计方法计算距离的分布式定位方案,避免了时间同步的要求
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