针对控制智能家居的基于人工神经网络的人脑植入物的网络攻击的自我修复网络安全机制

S. Pazouki, Noorbakhsh Amiri Golilarz, S. M. Kazemi-Razi, Abdullah Aydeger
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引用次数: 0

摘要

脑机接口(bci)被认为是具有计算、通信和决策能力的网络物理系统(cps)。控制能力被植入大脑,目的是在大脑的神经元上阅读和写作。虽然目前人类大脑植入物的应用是针对神经遗传学疾病,如阿尔茨海默氏症,但未来人类大脑植入物的应用是在人类大脑和基于计算机的设备之间进行通信。尽管网络物理技术具有突出的优势,但需要新的技术来控制内部/外部设备,并且系统容易受到网络威胁。本文提出了一种人工神经网络(ANN)技术,通过大脑植入物控制智能家居设备;2)对人脑植入物的不同网络攻击(即洪水、扫描、虚假数据注入和干扰);3)一种恢复技术,以减轻所提出的网络攻击对人脑植入物的影响。结果证明了所提出的网络安全/自我修复技术在减轻众所周知的强加于大脑植入物的网络攻击方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A self-healing cybersecurity mechanism for cyberattacks targeting artificial neural network-based human brain implants controlling smart homes
Brain computer interfaces (BCIs) are considered cyber-physical systems (CPSs) capable of computation, communication, and decision-making progress. The cybernetic capabilities are implanted in the brain for the purpose of reading and writing on neurons of the brain. While current applications of the human brain implant are for neurogenetics disorders such as Alzheimer's, there are futuristic applications of the human brain implant for communication between the brains of humans and computer-based devices. Despite the outstanding advantages of cyber-physical technology, new techniques are required to control in/external devices, and the system is vulnerable to cyber threats. This paper presents 1) an artificial neural network (ANN) technique to control the smart home devices via the brain implants, 2) different cyberattacks (i.e., Flooding, Scanning, False Data Injection, and Jamming) on the human brain implant, 3) a recovery technique to mitigate the impact of the proposed cyberattacks on the human brain implant. The results demonstrate the effectiveness of the proposed cybersecurity/self-healing technique to mitigate the well-known cyberattacks imposing the brain implant.
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