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基于机器学习的健康监测系统混合加密方法。

Hybrid Encryption Method for Health Monitoring Systems Based on Machine Learning.

机构信息

SRM Institute of Science & Technology (Tiruchirappalli Campus), SRM Nagar, Chennai Highway, Tiruchirappalli 621105, India.

Department of Systemics, School of Computer Science, University of Petroleum and Studies (UPES), Bidholi, Dehradun, Uttarakhand 248007, India.

出版信息

Comput Intell Neurosci. 2022 Jul 7;2022:7348488. doi: 10.1155/2022/7348488. eCollection 2022.

Abstract

Numerous forms of disasters and vandalism can occur in transmission lines, which makes them vulnerable. As a result, the transmission pipes must be protected by a reliable monitoring system. When a wireless sensor network is built from disparate devices that are positioned at varying distances from one another, it can be used to monitor physical and environmental conditions in the surrounding environment. In addition to the built-in sensor on the exterior of a pipeline and sensors positioned to support bridge structures, wireless sensor networks have a range of other applications. Other uses include robotics, healthcare, environmental monitoring, and a variety of other areas of technology. It is feasible to use wireless sensor networks to monitor temperature and pressure, as well as leak detection and transmission line sabotage, among other applications. There are several different sorts of attacks that can be launched against wireless sensor networks. When it comes to information security in wireless sensor networks, cryptographic approaches play a critical role in ensuring the integrity of the data. Different types of cryptographic algorithms are now available for use in order to maintain network security. Specific difficulties must be addressed, though, and these are as follows: To strengthen the power of these algorithms, a unique hybrid encryption approach for monitoring energy transmission lines and increasing the security of wireless sensor networks is created in this study. While wireless sensor networks are being used to monitor transmission pipelines, the proposed hybrid encryption method ensures that data is transferred securely and promptly. The proposed method must follow three cryptographic principles: integrity, secrecy, and authenticity. All of the subtleties and underlying principles of the algorithm are explained in detail so that the algorithm can be put into action immediately after it is introduced.

摘要

输电线路可能会遭受多种形式的灾害和人为破坏,这使得它们很脆弱。因此,必须通过可靠的监测系统对输电管道进行保护。当使用由彼此之间距离不同的异类设备构建的无线传感器网络来监测周围环境的物理和环境条件时,就可以使用该网络。除了安装在管道外部的内置传感器和用于支撑桥梁结构的传感器外,无线传感器网络还有许多其他应用。其他用途包括机器人技术、医疗保健、环境监测以及其他许多技术领域。可以使用无线传感器网络来监测温度和压力,以及泄漏检测和传输线破坏等应用。针对无线传感器网络可以发起几种不同类型的攻击。在无线传感器网络的信息安全方面,加密方法在确保数据完整性方面起着至关重要的作用。现在可以使用不同类型的加密算法来维护网络安全。不过,必须解决一些特定的难题:为了增强这些算法的功能,本研究提出了一种独特的混合加密方法,用于监测能源传输线并提高无线传感器网络的安全性。在使用无线传感器网络监测输电管道时,所提出的混合加密方法确保了数据的安全快速传输。所提出的方法必须遵循三个加密原则:完整性、机密性和真实性。详细解释了算法的所有细微差别和基本原理,以便在引入算法后可以立即付诸实施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ed0/9283022/629bc078c29b/CIN2022-7348488.001.jpg

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