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Secrecy Rate Maximization in Full-Duplex Multi-Antenna Decode-and-Forward Relay Systems

机译:全双工多天线解码和前进中继系统中的保密速率最大化

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This paper proposes optimum beamforming for a system consisting of a source, a full-duplex (FD) relay, an intended destination, and an eavesdropper. The source and destination are single-antenna nodes, whereas the FD relay is a multi-antenna node. Our objective is to find the optimum receive and transmit beamformers at the relay so that the secrecy rate is maximized. The joint optimization problem is equivalently expressed in terms of the transmit beamformer. The resulting optimization is non-convex. However, we equivalently reformulate it to a suitable form so that the optimum solution is obtained by solving semi-definite relaxation problem, in conjunction with a line search confined to a specific region. Computer simulations demonstrate significant increase in secrecy rate compared to the conventional secure half-duplex relay communications.
机译:本文提出了用于由源,全双工(FD)继电器,预期目的地和窃听器组成的系统的最佳波束形成。源和目的地是单天线节点,而FD继电器是多天线节点。我们的目标是在继电器处找到最佳接收和传输波束形成器,以便最大化保密率。以发射波束形成器等效地表达联合优化问题。得到的优化是非凸的。然而,我们等效地将其重构到合适的形式,使得通过求解半定弛豫问题,结合局限于特定区域的线路搜索来获得最佳解决方案。与传统的安全半双工继电器通信相比,计算机模拟表明保密率显着增加。

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