Development of a Model for Spoofing Attacks in Internet of Things

Author:

Khan FaheemORCID,Al-Atawi Abdullah A.ORCID,Alomari AbdullahORCID,Alsirhani AmjadORCID,Alshahrani Mohammed Mujib,Khan JawadORCID,Lee YoungmoonORCID

Abstract

Internet of Things (IoT) allows the integration of the physical world with network devices for proper privacy and security in a healthcare system. IoT in a healthcare system is vulnerable to spoofing attacks that can easily represent themselves as a legal entity of the network. It is a passive attack and can access the Medium Access Control address of some valid users in the network to continue malicious activities. In this paper, an algorithm is proposed for detecting spoofing attacks in IoT using Received Signal Strength (RSS) and Number of Connected Neighbors (NCN). Firstly, the spoofing attack is detected, located and eliminated through Received Signal Strength (RSS) in an inter-cluster network. However, the RSS is not useful against intra-cluster spoofing attacks and therefore the NCN is introduced to detect, identify and eliminate the intra-cluster spoofing attack. The proposed model is implemented in Network Simulator 2 (NS-2) to compare the performance of the proposed algorithm in the presence and absence of spoofing attacks. The result is that the proposed model increases the detection and prevention of spoofing.

Publisher

MDPI AG

Subject

General Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

Reference33 articles.

1. Light-weight detection of spoofing attacks in wireless networks;Li;Proceedings of the 2006 IEEE International Conference on Mobile Ad Hoc and Sensor Systems,2006

2. Analyzing spoofing attacks in wireless networks;Jindal;Proceedings of the 2014 Fourth International Conference on Advanced Computing & Communication Technologies,2014

3. Z-IOT: Passive device-class fingerprinting of zigbee and z-wave iot devices;Babun;Proceedings of the ICC 2020–2020 IEEE International Conference on Communications (ICC),2020

4. Dynamic Tree Routing Protocol with Convex Hull Optimization for Optimal Routing Paths;Anitha;Proceedings of the 2022 International Conference on Electronics and Renewable Systems (ICEARS),2022

5. A review on security challenges in internet of things (IoT);Shaukat;Proceedings of the 2021 26th International Conference on Automation and Computing (ICAC),2021

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