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A Pseudo-Random Beamforming Technique for Improving Physical-Layer Security of MIMO Cellular Networks

机译:一种提高MIMO蜂窝网络物理层安全性的伪随机波束形成技术

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摘要

In this paper, we propose a pseudo-random beamforming (PRBF) technique for improving physical-layer security (PLS) in multiple input multiple output (MIMO) downlink cellular networks consisting of a legitimate base station (BS), multiple legitimate mobile stations (MSs) and potential eavesdroppers. The legitimate BS can obtain available potential eavesdroppers’ channel state information (CSI), which is registered in an adjacent cell. In the proposed PRBF technique, the legitimate BS pseudo-randomly generates multiple candidates of the transmit beamforming (BF) matrix, in which each transmit BF matrix consists of multiple orthonormal BF vectors and shares BF information with legitimate MSs before data transmission. Each legitimate MS generates receive BF vectors to maximize the receive signal-to-interference-plus-noise (SINR) for all pseudo-randomly generated transmit beams and calculates the corresponding SINR. Then, each legitimate MS sends a single beam index and the corresponding SINR value of the BF vector that maximizes the received SINR for each BF matrix since a single spatial stream is sent to each legitimate MS. Based on the feedback information from legitimate MSs and the CSI from the legitimate BS to eavesdroppers, the legitimate BS selects the optimal transmit BF matrix and the legitimate MSs that maximizes secrecy sum-rate. We also propose a codebook-based opportunistic feedback (CO-FB) strategy to reduce feedback overhead at legitimate MSs. Based on extensive computer simulations, the proposed PRBF with the proposed CO-FB significantly outperforms the conventional random beamforming (RBF) with the conventional opportunistic feedback (O-FB) strategies in terms of secrecy sum-rate and required feedback bits.
机译:在本文中,我们提出了一种伪随机波束成形(PRBF)技术,用于改善由合法基站(BS),多个合法移动站组成的多输入多输出(MIMO)下行链路蜂窝网络中的物理层安全性(PLS)技术( MSS)和潜在的窃听者。合法的BS可以获得可用的潜在窃听者的频道状态信息(CSI),其在相邻的单元中注册。在所提出的PRBF技术中,合法BS伪随机地生成了发射波束形成(BF)矩阵的多个候选,其中每个发送BF矩阵由多个正式的BF矢量组成,并在数据传输之前与合法MS共享BF信息。每个合法的MS产生接收BF矢量,以最大化所有伪随机生成的发送波束的接收信号到干扰加噪声(SINR),并计算相应的SINR。然后,每个合法的MS发送单个光束索引和BF向量的相应SINR值,其为每个BF矩阵最大化所接收的SINR,因为单个空间流被发送到每个合法的MS。基于来自合法MS和CSI的反馈信息,从合法的BS到窃听者,合法BS选择最佳传输BF矩阵和最大化保密总和率的合法MS。我们还提出了一种基于码本的机会主义反馈(CO-FB)策略,以减少合法MSS的反馈开销。基于广泛的计算机模拟,提出的PRBF具有所提出的CO-FB,在保密的总和率和所需的反馈比特方面具有传统的机会主义反馈(O-FB)策略的传统随机波束形成(RBF)显着优于传统的随机波束形成(RBF)。

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