Secure Localization for Underwater Wireless Sensor Networks Based on Probabilistic Approach

M. Shanthi, D. Anvekar
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引用次数: 8

Abstract

The Underwater Wireless Sensor Network (UWSN) is a special class of Wireless Sensor Network (WSN), which is basically deployed inside water bodies for performing the required sensing tasks. Unlike WSN, identifying the location information of the different sensor nodes is a challenging task, mainly due to the signal problems associated with the water medium. Node Localization refers to identifying or estimating the location co-ordinates of the required sensor nodes. Many effective node localization techniques have been proposed in the literature. A new challenge has emerged related to security of the node localization technique, wherein, intruder or compromised sensor nodes provide faulty information for the node localization process. This specialized attack can result in improper node localization, and may result in network disconnection. Currently, effective solution to address this problem in the literature is still lacking. In this work, a secure localization framework based on probabilistic model is presented. This proposed localization framework, substantially outperforms the contemporary framework in-terms of security effectiveness when demonstrated empirically.
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基于概率方法的水下无线传感器网络安全定位
水下无线传感器网络(UWSN)是一类特殊的无线传感器网络(WSN),它基本上部署在水体内部,执行所需的传感任务。与WSN不同,识别不同传感器节点的位置信息是一项具有挑战性的任务,主要是由于与水介质相关的信号问题。节点定位是指识别或估计所需传感器节点的位置坐标。文献中提出了许多有效的节点定位技术。在节点定位技术的安全性方面出现了新的挑战,其中入侵者或受损的传感器节点为节点定位过程提供了错误的信息。这种专门的攻击可能导致节点定位不正确,并可能导致网络中断。目前,文献中还缺乏针对这一问题的有效解决方案。本文提出了一种基于概率模型的安全定位框架。经过实证证明,该建议的本地化框架在安全有效性方面大大优于当前框架。
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