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Joint Power and Beam Optimization in a Multi-Carrier MIMO Wiretap Channel with Full-Duplex Jammer

机译:具有全双工干扰器的多载体MIMO丝网通道中的接合电源和光束优化

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In this paper we address a sum secrecy rate maximization problem for a multi-carrier and MIMO communication system. We consider the case that the receiver is capable of full-duplex (FD) operation and simultaneously sends jamming signal to a potential eavesdropper. In particular, we simultaneously take advantage of the spatial and frequency diversity in the system in order to obtain a higher level of security in the physical layer. Due to the non-convex nature of the resulting mathematical problem, we propose an iterative solution with a guaranteed convergence, based on block coordinate descent method, by re-structuring our problem as a separately convex program. Moreover, for the special case that the transmitter is equipped with a single antenna, an optimal transmit power allocation strategy is obtained analytically, assuming a known jamming strategy. The performance of the proposed design is then numerically evaluated compared to the other design strategies, and under different system assumptions.
机译:在本文中,我们解决了多载波和MIMO通信系统的SUM保密速率最大化问题。我们考虑接收器能够进行全双工(FD)操作的情况,并同时将干扰信号发送到电位窃听器。特别地,我们同时利用系统中的空间和频率分集,以便在物理层中获得更高水平的安全性。由于产生的数学问题的非凸性质,我们通过将我们的问题重新构建为单独凸面程序来提出基于块坐标序列方法的保证融合来提出迭代解决方案。此外,对于发射器配备有单个天线的特殊情况,假设已知的干扰策略,在分析上获得最佳发射功率分配策略。然后,与其他设计策略相比,在不同的系统假设下进行了数值评估了所提出的设计的性能。

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