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Robust Beamforming Design for SWIPT-Enabled Hierarchical Cognitive Radio Networks

机译:启用S​​WIPT的分层认知无线电网络的稳健波束成形设计

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摘要

In this paper, we investigate the robust beamforming design for simultaneous wireless information and power transfer (SWIPT)-enabled hierarchical cognitive radio (HCR) where the primary receiver (PR) is allowed to harvest energy when the secondary system (SS) radiates its information to the secondary receiver (SR). The design objective is to maximize the transmission rate of SS provided that the harvested energy and outage probability of the primary system (PS) are guaranteed. The optimization problem, however, is not convex due to the probability-based constraints introduced by the imperfect channel state information (CSI). To obtain the tractable solution, we apply the Bernstein-type inequality and sphere bounding so that the problem can be approximated by convex formulations. Then, the resultant problems can be efficiently solved with CVX tools. Simulation results demonstrate that the designs can effectively improve the system performance under imperfect CSI environments.
机译:在本文中,我们研究了针对同时启用无线信息和功率传输(SWIPT)的分层认知无线电(HCR)的鲁棒波束成形设计,其中,当辅助系统(SS)辐射其信息时,允许主接收器(PR)收集能量到次要接收器(SR)。设计目标是在保证所收集的能量和一次系统(PS)中断概率的情况下最大化SS的传输速率。然而,由于不完善的信道状态信息(CSI)引入了基于概率的约束,因此优化问题并不是凸面的。为了获得可解决的解决方案,我们应用了伯恩斯坦型不等式和球面定界,以便可以用凸公式来近似该问题。然后,可以使用CVX工具有效地解决由此产生的问题。仿真结果表明,该设计可以在不完善的CSI环境下有效地提高系统性能。

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