6G及以后物联网中使用非正交信号叠加和双传输的多小区、多用户和多载波安全通信

Muhammad Zia, Haji. M. Furqan, Jehad M. Hamamreh
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引用次数: 2

摘要

考虑到物联网(IoT)在6G及以后通信中的进步,物联网设备中的数据传输安全性由于其显著特性(例如低计算复杂性,低功耗要求)而受到广泛关注。在这样的设备中,传统的加密技术可能无法提供安全的通信。为了克服这个缺点,物理层安全性(PLS)具有提供适合此类应用程序的安全解决方案的巨大潜力。在这项工作中,提出了一种高效的PLS技术,用于在下行链路多单元、多用户和多载波物联网通信系统中提供针对外部和内部窃听者的安全通信。在我们提出的系统中,我们考虑了两个基站,其中每个基站使用单个射频(RF)链连接用于传输数据的两个天线。此外,我们以两轮方式传输数据,每轮传输通过每个基站的单个有源天线进行。在无源窃听器存在的情况下,每轮传输使用不同的天线与两个单天线物联网设备/用户进行通信。在该算法中,基于频率选择信道的预编码器矩阵和双传输方法被联合使用。双重传输从两个基站同时进行,以提供针对内部和外部窃听者的安全性。该系统适用于基于物联网的应用。此外,通过广泛的数学和仿真分析证明了我们提出的算法的潜在能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-cell, Multi-user, and Multi-carrier Secure Communication Using Non-Orthogonal Signals’ Superposition with Dual-Transmission for IoT in 6G and Beyond
Considering the advancements of the internet of things (IoT) in 6G and beyond communications, data transmission security in IoT devices has received extensive interest because of their significant features, such as low computational complexity, led by low power requirements. In such devices, the conventional cryptographic techniques may fail to provide secure communication. To fight this drawback, physical layer security (PLS) has remarkable potential to provide security solutions suitable for such applications. In this work, a highly effective PLS technique is proposed for providing secure communication against external and internal eavesdroppers in a downlink multi-cell, multi-user, and multi-carrier IoT communication system. In our proposed system, we considered two base stations, where each base station uses a single radio frequency (RF) chain to link two antennas that are used for the transmission of data. Further, we transmit the data in two rounds, and each round of transmission occurs through a single active antenna of each base station. A different antenna is used for each round of transmission to communicate with two single antenna IoT devices/users in the presence of a passive eavesdropper. In the proposed algorithm, frequency selective channel-based pre-coder matrices and the dual transmission approach are jointly employed. The dual-transmission is performed simultaneously from two base stations to provide security against internal and external eavesdroppers. The proposed system is suitable for IoT-based applications. Also, the potential capabilities of our proposed algorithm are proved by extensive mathematical and simulation analysis.
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