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Physical-Layer Security Enhancement for SIMO-MBM Systems

机译:SIMO-MBM系统的物理层安全增强

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Media-based modulation (MBM) has become a promising technology for wireless communications, which offers significant throughput enhancement and superior performance due to the channel diversity gain achieved by RF mirrors. In this paper, the physical-layer security (PLS) issue is investigated for the single-input-multiple-output MBM (SIMO-MBM) system, and a secure SIMO-MBM system is proposed. Especially, by considering time-division duplexing (TDD) mode, based on its channel reciprocity property, both the data symbol bits and the index bits are protected from the eavesdropper by using the amplitude and phase information of the legitimate channel states as the secret key. For performance evaluation, the bit error rate (BER) of the eavesdropper as well as the system secrecy mutual information are investigated, and Monte Carlo simulations are carried out. Simulation results demonstrate that, the proposed secure SIMO-MBM system is capable of efficiently preventing data leakage whilst ensuring reliable data transmission.
机译:基于媒体的调制(MBM)已成为无线通信的有希望的技术,这提供了显着的吞吐量增强和由于RF镜的通道分集增益而卓越的性能。在本文中,针对单输入多输出MBM(SIMO-MBM)系统进行了研究的物理层安全性(PLS)问题,提出了一种安全的SIMO-MBM系统。特别地,通过考虑时分双工(TDD)模式,基于其信道互补性属性,通过使用合法信道状态的幅度和相位信息作为秘密密钥,通过幅度和相位信息保护数据符号位和索引位。 。对于绩效评估,研究了窃听器的误码率(BER)以及系统保密互动信息,并进行蒙特卡罗模拟。仿真结果表明,所提出的安全SIMO-MBM系统能够有效地防止数据泄漏,同时确保可靠的数据传输。

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