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RPLAD3:基于无线传感器网络的物联网中黑洞、灰洞和选择性转发攻击的异常检测

RPLAD3: anomaly detection of blackhole, grayhole, and selective forwarding attacks in wireless sensor network-based Internet of Things.

作者信息

Alansari Zainab, Anuar Nor Badrul, Kamsin Amirrudin, Belgaum Mohammad Riyaz

机构信息

Faculty of Computer Science and Information Technology, University of Malaya, Kuala Lumpur, Malaysia.

College of Computing and Information Sciences, University of Technology and Applied Sciences, Muscat, Sultanate of Oman.

出版信息

PeerJ Comput Sci. 2023 Mar 27;9:e1309. doi: 10.7717/peerj-cs.1309. eCollection 2023.

Abstract

Routing protocols transmit vast amounts of sensor data between the Wireless Sensor Network (WSN) and the Internet of Things (IoT) gateway. One of these routing protocols is Routing Protocol for Low Power and Lossy Networks (RPL). The Internet Engineering Task Force (IETF) defined RPL in March 2012 as a distance-vector routing protocol for wireless communications with lower energy. Although RPL messages use a cryptographic algorithm for security protection, it does not help prevent internal attacks. These attacks drop some or all packets, such as blackhole or selective forwarding attacks, or change data packets, like grayhole attacks. The RPL protocol needs to be strengthened to address such an issue, as only a limited number of studies have been conducted on detecting internal attacks. Moreover, earlier research should have considered the mobility framework, a vital feature of the IoT. This article presents a novel lightweight system for anomaly detection of grayhole, blackhole, and selective forwarding attacks. The study aims to use a trust model in the RPL protocol, considering attack detection under mobility frameworks. The proposed system, anomaly detection of three RPL attacks (RPLAD3), is designed in four layers and starts operating immediately after the initial state of the network. The experiments demonstrated that RPLAD3 outperforms the RPL protocol when defeating attacks with high accuracy and a true positive ratio while lowering power and energy consumption. In addition, it significantly improves the packet delivery ratio and decreases the false positive ratio to zero.

摘要

路由协议在无线传感器网络(WSN)和物联网(IoT)网关之间传输大量传感器数据。其中一种路由协议是低功耗有损网络路由协议(RPL)。互联网工程任务组(IETF)在2012年3月将RPL定义为一种用于低能耗无线通信的距离矢量路由协议。尽管RPL消息使用加密算法进行安全保护,但它无助于防止内部攻击。这些攻击会丢弃部分或所有数据包,如黑洞攻击或选择性转发攻击,或者篡改数据包,如灰洞攻击。由于针对检测内部攻击的研究数量有限,RPL协议需要得到加强。此外,早期研究本应考虑移动性框架,这是物联网的一个关键特性。本文提出了一种用于检测灰洞、黑洞和选择性转发攻击的新型轻量级系统。该研究旨在在RPL协议中使用信任模型,同时考虑移动性框架下的攻击检测。所提出的系统,即三种RPL攻击异常检测系统(RPLAD3),设计为四层结构,并在网络初始状态后立即开始运行。实验表明,RPLAD3在以高精度和真阳性率击败攻击的同时降低功耗和能耗方面优于RPL协议。此外,它显著提高了数据包传输率,并将误报率降至零。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92f1/10280629/9c7e28570242/peerj-cs-09-1309-g001.jpg

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