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Secure SWIPT in MISO Downlink System with Energy Efficiency Constraint

机译:使用能效约束安全的SUMO下行系统中的SWICK

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Energy efficiency (EE) is a key metric in future green wireless networks. In this paper, we study the secure simultaneous wireless information and power transfer (SWIPT) in a downlink multiple-input-single-output (MISO) system, where the energy efficiency (EE) of the system is guaranteed. By jointly designing the transmit beamforming (BF), artificial noise (AN) and power splitting (PS) ratio, the total transmit power is minimized under given quality of service (QoS) and energy harvesting requirement at the legitimate user. To tackle the non-convex problem, we first transform it into a convex one by applying successive convex approximation (SCA), relax the problem into a tractable alternative, and then employ the semi-definite relaxation (SDR) technique. Finally, we use one-dimensional search to obtain the optimal PS ratio. Moreover, the tightness of the relaxation is proved. Simulation results show our proposed algorithm outperforms other schemes such as zero forcing (ZF) or without utilizing AN.
机译:能效(EE)是未来绿色无线网络中的一个关键指标。在本文中,我们研究了在下行链路多输入单输出(MISO)系统中的安全同时无线信息和电力传输(SWIPT),其中保证了系统的能效(EE)。通过共同设计发射波束成形(BF),人工噪声(AN)和功率分裂(PS)比,在给定的服务质量(QoS)和合法用户的能量收集要求下,总发射功率最小化。为了解决非凸面问题,我们首先通过施加连续的凸近似(SCA)将其转换为凸面,将问题放入易替代的替代方案中,然后采用半定弛豫(SDR)技术。最后,我们使用一维搜索来获得最佳PS比率。而且,证明了松弛的紧张性。仿真结果表明我们所提出的算法优于其他方案,如零强制(ZF)或不使用。

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