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一种用于减轻物联网环境中干扰和窃听攻击的物理层安全协作框架。

A Physical-Layer Security Cooperative Framework for Mitigating Interference and Eavesdropping Attacks in Internet of Things Environments.

作者信息

Farraj Abdallah, Hammad Eman

机构信息

Department of Electrical Engineering, Texas A&M University-Texarkana/RELLIS Campus, Bryan, TX 77807, USA.

Engineering Technology and Industrial Distribution Department, Texas A&M University, College Station, TX 77843, USA.

出版信息

Sensors (Basel). 2024 Aug 10;24(16):5171. doi: 10.3390/s24165171.

Abstract

Intentional electromagnetic interference attacks (e.g., jamming) against wireless connected devices such as the Internet of Things (IoT) remain a serious challenge, especially as such attacks evolve in complexity. Similarly, eavesdropping on wireless communication channels persists as an inherent vulnerability that is often exploited by adversaries. This article investigates a novel approach to enhancing information security for IoT systems via collaborative strategies that can effectively mitigate attacks targeting availability via interference and confidentiality via eavesdropping. We examine the proposed approach for two use cases. First, we consider an IoT device that experiences an interference attack, causing wireless channel outages and hindering access to transmitted IoT data. A physical-layer-based security (PLS) transmission strategy is proposed in this article to maintain target levels of information availability for devices targeted by adversarial interference. In the proposed strategy, select IoT devices leverage a cooperative transmission approach to mitigate the IoT signal outages under active interference attacks. Second, we consider the case of information confidentiality for IoT devices as they communicate over wireless channels with possible eavesdroppers. In this case, we propose a collaborative transmission strategy where IoT devices create a signal outage for the eavesdropper, preventing it from decoding the signal of the targeted devices. The analytical and numerical results of this article illustrate the effectiveness of the proposed transmission strategy in achieving desired IoT security levels with respect to availability and confidentiality for both use cases.

摘要

针对物联网(IoT)等无线连接设备的故意电磁干扰攻击(如干扰)仍然是一个严峻挑战,尤其是随着此类攻击的复杂性不断演变。同样,窃听无线通信信道仍然是一个固有的漏洞,对手经常利用这一点。本文研究了一种新颖的方法,通过协作策略增强物联网系统的信息安全,这些策略可以有效减轻针对可用性的干扰攻击和针对保密性的窃听攻击。我们针对两个用例研究了所提出的方法。首先,我们考虑一个遭受干扰攻击的物联网设备,该攻击导致无线信道中断并阻碍对传输的物联网数据的访问。本文提出了一种基于物理层的安全(PLS)传输策略,以维持受对抗性干扰的设备的目标信息可用性水平。在所提出的策略中,选定的物联网设备利用协作传输方法来减轻主动干扰攻击下的物联网信号中断。其次,我们考虑物联网设备在通过无线信道与可能的窃听者通信时的信息保密性情况。在这种情况下,我们提出了一种协作传输策略,物联网设备在其中为窃听者制造信号中断,防止其解码目标设备的信号。本文的分析和数值结果说明了所提出的传输策略在实现针对两个用例的可用性和保密性方面所需的物联网安全级别方面的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcbb/11359058/fee40ec06420/sensors-24-05171-g001.jpg

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