为数字双胞胎,网络双胞胎,网络双胞胎提供明智和安全的物联网通信

Hailin Feng , Dongliang Chen , Haibin Lv
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引用次数: 9

摘要

为了有效解决当前智能无线终端在数字孪生生物网络中遇到的安全问题,保证无线通信网络的稳定高效运行。本研究旨在减少通信网络中的干扰攻击,设计了一种基于移动跟踪器的物联网通信过程中的干扰源定位方案。首先,本文对基于属性的加密(ABE)进行了改进,以满足数字孪生网络通信的安全性和开销要求。访问控制策略用于加密随机密钥,对称加密方案用于隐藏密钥。此外,在本文提出的干扰源定位技术中,基于无气味卡尔曼滤波原理降低了观测噪声的影响,并通过干扰源运动模型对估计的干扰源定位进行修正。为了进一步评估该方法作为干扰源的性能,本文对干扰攻击场景进行了仿真。该算法的均方根误差(RMSE)值为0.245 m,优于ErrMin算法(0.313 m),且观测节点数小于ErrMin算法的一半。综上所述,以干扰信号强度(JSS)信息为观测值,基于无迹卡尔曼滤波算法估计干扰源位置和其他状态信息,可以获得满意的结果。该研究对物联网中数字孪生体的安全通信具有重要价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensible and secure IoT communication for digital twins, cyber twins, web twins

In order to effectively solve the current security problems encountered by smart wireless terminals in the digital twin biological network, to ensure the stable and efficient operation of the wireless communication network. This research aims to reduce the interference attack in the communication network, an interference source location scheme based on Mobile Tracker in the communication process of the Internet of Things (IoT) is designed. Firstly, this paper improves Attribute-Based Encryption (ABE) to meet the security and overhead requirements of digital twin networking communication. The access control policy is used to encrypt a random key, and the symmetric encryption scheme is used to hide the key. In addition, in the proposed interference source location technology, the influence of observation noise is reduced based on the principle of unscented Kalman filter, and the estimated interference source location is modified by the interference source motion model. In order to further evaluate the performance of the method proposed as the interference source, this paper simulates the jamming attack scenario. The Root Mean Square Error (RMSE) value of the proposed algorithm is 0.245 ​m, which is better than the ErrMin algorithm (0.313 ​m), and the number of observation nodes of the proposed algorithm is less than half of the ErrMin algorithm. To sum up, satisfactory results can be achieved by taking the Jamming Signal Strength (JSS) information as the observation value and estimating the location of the interference source and other state information based on the untracked Kalman filter algorithm. This research has significant value for the secure communication of the digital twins in the IoT.

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CiteScore
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