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Improving Physical Layer Security in Two-Way Relay Systems

机译:改善双向中继系统中的物理层安全性

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Ahstract- This paper studies the physical layer security in a two-way relay system (TWRS) consisting of two transceivers, one eavesdropper, and multiple relays when the channel state information (CSI) of the eavesdropper is available. We consider the problem of maximizing the secrecy sum rate by optimizing the relay beamforming vector under relays' total power constraint. The optimization problem has been formulated in the literature as a product of three Rayleigh quotients, which is very difficult to solve, and the best proposed solution was a suboptimal solution to the null space beamforming. Here, we propose two approaches: 1) Optimal solution to the null space beamforming approach, and 2) Ignoring one Rayleigh quotient (IORQ) approach (which has not been proposed before). In the first approach, we convert the nonconvex product of two Rayleigh quotients into a convex problem with one dimensional search using semidefinite programming (SDP). Then we significantly reduce the complexity of solving the problem using the generalized eigenvalues. In the second approach, we look for the beamforming vector that does not eliminate the complete information signal at the eavesdropper aiming to increase the whole secrecy sum rate. Numerical results show that the proposed algorithms provide higher secrecy sum rates than the existing algorithms.
机译:Ahstract-本文研究了在双向监听系统(TWRS)中的物理层安全性,该系统由两个收发器,一个监听器和多个中继器组成(当监听器的通道状态信息(CSI)可用时)。我们考虑了在中继器总功率约束下通过优化中继器波束成形向量来最大化保密总和的问题。文献中已将优化问题描述为三个瑞利商的乘积,这很难解决,而提出的最佳解决方案是零空间波束形成的次优解决方案。在这里,我们提出两种方法:1)零空间波束成形方法的最佳解决方案,以及2)忽略一种瑞利商(IORQ)方法(之前尚未提出)。在第一种方法中,我们使用半定规划(SDP)通过一维搜索将两个瑞利商的非凸乘积转换为凸问题。然后,我们使用广义特征值显着降低了解决问题的复杂性。在第二种方法中,我们寻找不会在窃听器中消除完整信息信号的波束形成矢量,目的是提高整体保密和率。数值结果表明,与现有算法相比,所提出的算法具有更高的保密总和率。

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