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Secure Beamforming in Full-Duplex Two-Way Relay Networks With SWIPT for Multimedia Transmission

机译:用SWIT用于多媒体传输的全双工双向继电网安全密布形成

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With the advent of 5G, multimedia services in wireless communication networks will grow dramatically. So far, many researches have focused on improving security, throughput and channel capacity to support multimedia services. In this paper, a new system model of full-duplex (FD) two-way amplify-and-forward (AF) relay network with simultaneous wireless information and power transfer is presented, where two FD legitimate nodes with two single-antenna communicate with each other via energy-constrained AF relay with multiple antennas, and there is a half-duplex node with single antenna who intends to eavesdrop. This paper targets to maximize the secrecy sum rate of the system by designing the transmit beamforming vector of relay under power constraint and zero-forcing constraint, where two energy harvesting protocols, namely, power splitting and time switching are considered. However the maximization problem is a non-convex optimization, and it is very complex to solve. Therefore a linear method is used to find the lower bound of the secrecy sum rate and the non-convex problem is transformed into a convex optimization problem. After that, an iterative algorithm based on difference-of-convex programming is proposed to solve this convex optimization problem. The simulation results show the good convergence of the proposed iterative algorithm and also the superiority of secrecy sum rate of our proposed scheme compared with two traditional schemes.
机译:随着5G的出现,无线通信网络中的多媒体服务将大大增长。到目前为止,许多研究都集中在提高安全性,吞吐量和渠道能力,以支持多媒体服务。在本文中,提出了一种具有同时无线信息和电力传输的全双工(FD)双向扩增和前进(AF)继电器网络的新系统模型,其中两个FD合法节点具有两个单天线与通过具有多个天线的能量约束AF中继彼此,并且有一个半双工节点,其中打算窃听。本文通过设计功率约束和零强制约束下的中继的发射波束成形向量来最大化系统的保密量率,其中考虑两个能量收集协议,即功率分裂和时间切换。然而,最大化问题是非凸优化,解决是非常复杂的。因此,使用线性方法来找到保密量率的下限,并且非凸面问题被转换为凸优化问题。之后,提出了一种基于凸面编程的迭代算法来解决该凸优化问题。仿真结果表明,与两种传统方案相比,我们所提出的迭代算法的良好收敛性以及我们所提出的方案的保密量率的优势。

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