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Secure Hybrid Beamformers Design in mmWave MIMO Wiretap Systems

机译:MMWAVE MIMO WIRETAP系统中的安全混合束形成器设计

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Millimeter wave (mmWave) communications have been considered as a key technology to enable very high data rate in the fifth-generation applications. Multiple-input-multiple-output (MIMO) systems with hardware efficient analog/digital hybrid beamformer architecture have been widely considered to overcome the severe propagation loss of the mmWave channels. However, physical layer security in the mmWave wiretap MIMO systems and secure hybrid beamformer design have not been well investigated. In this paper, we consider the problem of the hybrid beamformer design for the secure transmission in mm Wave wiretap MIMO systems in order to protect the legitimate transmission from eavesdropping. We aim to develop efficient secure hybrid beamformer design algorithms for both codebook-free and codebook-based analog beamformer schemes with either high-resolution or low-resolution phase shifters. Particularly, when eavesdropper's channel state information (CSI) is known, we first propose a joint analog precoder and combiner design algorithm that can prevent the information leakage to the eavesdropper. Then, the digital precoder and combiner are computed based on the obtained effective baseband channel to further maximize the secrecy rate. If prior knowledge of the eavesdropper's CSI is unavailable, we develop an artificial-noise-based hybrid beamforming approach, which can disrupt eavesdropper's reception while maintaining the quality-of-service of the intended receiver at a prespecified level. Extensive simulation results validate the effectiveness of the proposed secure hybrid beamformer designs under different availabilities of eaves-droppers CSI.
机译:毫米波(MMWAVE)通信被认为是在第五代应用中实现非常高的数据速率的关键技术。具有硬件高效模拟/数字混合波束形成器架构的多输入多输出(MIMO)系统已被广泛地考虑克服MMWAVE通道的严重传播损失。然而,MMWave Wiretap MIMO系统中的物理层安全性和安全的混合波束形成器设计尚未得到很好的研究。在本文中,我们考虑了混合波束形成器设计的问题,用于MM波WiReTAP MIMO系统中的安全传输,以保护来自窃听的合法传输。我们的目的,为具有高分辨率或低分辨率相移器的基于码本和基于码本的模拟波束形成器方案的高效安全混合波束形成器设计算法。特别是,当已知窃听者的信道状态信息(CSI)时,我们首先提出了一种接头模拟预编码器和组合器设计算法,其可以防止信息泄漏到窃听器。然后,基于所获得的有效基带通道计算数字预编码器和组合器,以进一步最大化保密率。如果窃听者的CSI的先验知识不可用,我们开发了一种基于人工噪声的混合波束形成方法,其可以破坏窃听者的接收,同时保持预期接收器的级别的服务质量。广泛的仿真结果验证了所提出的安全混合波束形成器设计的有效性,以不同的屋檐滴剂CSI的可用性。

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