Secure Beamforming for Intelligent Reflecting Surface Assisted MISO Wireless Communications

R. Kaur, Bajrang Bansal
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Abstract

This paper provides a method to provide physical layer security (PLS) between the source and the authorised user in the event that a direct line-of-sight (LoS) path is not feasible by using an intelligent reflecting surface (IRS). A new beamforming solution is proposed that can offer maximum gain at the intended user without any information leakage to eavesdropper when multiple-antenna base station (BS) with single antenna at legitimate user and eavesdropper (i.e., multiple-input-single-output, or MISO) is taken into consideration. In the absence of LoS, the proposed IRS-assisted approach can establish a communication link between the BS and the authorised user by combining maximum ratio transmission (MRT) with traditional zero-forcing (ZF) beamforming. The suggested approach is compared to other beamforming methods like MRT and traditional ZF in terms of performance metrics like channel capacity and secrecy capacity for the Rayleigh dispersed channel. The proposed approach outperforms the other techniques, it is concluded. In the end, the performance of secrecy is also examined in relation to many parameters, such as IRS elements or transmit antennas, and it is concluded that the provided method exhibits the most suitable performance.
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智能反射面辅助MISO无线通信的安全波束形成
本文提供了一种方法,在使用智能反射面(IRS)的直接视距(LoS)路径不可行的情况下,在源和授权用户之间提供物理层安全性(PLS)。提出了一种新的波束形成方案,该方案在考虑合法用户和窃听者处具有单天线的多天线基站(即多输入单输出,MISO)时,可以在目标用户处提供最大的增益,而不会向窃听者泄露任何信息。在没有LoS的情况下,提出的irs辅助方法可以通过将最大比传输(MRT)与传统的零强迫(ZF)波束形成相结合,在BS和授权用户之间建立通信链路。根据瑞利分散信道的信道容量和保密容量等性能指标,将建议的方法与MRT和传统的ZF等其他波束形成方法进行了比较。结果表明,该方法优于其他方法。最后,研究了与IRS元件或发射天线等参数有关的保密性能,并得出结论,所提供的方法具有最合适的性能。
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