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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Coordinated Beamforming With Artificial Noise for Secure SWIPT Under Non-Linear EH Model: Centralized and Distributed Designs
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Coordinated Beamforming With Artificial Noise for Secure SWIPT Under Non-Linear EH Model: Centralized and Distributed Designs

机译:非线性EH模型下安全SWIPT的人工噪声协调波束成形:集中式和分布式设计

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This paper investigates the artificial noise (AN)-aided multi-cell coordinated beamforming (MCBF) for secure simultaneous wireless information and power transfer in both centralized and distributed manners. The proposed transmit design is formulated into a power-minimization problem to guarantee the authorized users' information and energy harvesting (EH) requirements while avoiding the information interception by unauthorized users. Power splitting receiver architecture and the non-linear EH model are employed. Both perfect and imperfect channel state information (CSI) cases are considered. For the perfect CSI case, the non-robust design is presented by applying semi-definition relaxation (SDR). When no user harvests energy, the global optimum is guaranteed, and when some users harvest energy, approximate global optimum is achieved. For the imperfect CSI case, the worst-case robust design under the deterministic uncertainty channel model is studied, where a solving approach based on SDR and S-procedure is proposed, and the statistically robust design under the stochastic uncertainty channel model is also studied, where an upper bound to the global optimum is obtained by using SDR and Bernstein-type inequality. We further propose a distributed AN-aided MCBF design framework by using an alternating direction method of multipliers for the non-robust, worst-case robust, and statistically robust designs, with which each BS is able to optimize its own transmit design with the local CSI. Simulation results demonstrate our theoretical analysis, which show that our proposed distributed algorithm converges to the optimal results obtained by the centralized one. It also shows that employing the non-linear EH model is able to avoid false output power and save power consumption at the BSs.
机译:本文研究了人工噪声(AN)辅助的多小区协调波束成形(MCBF),以集中式和分布式方式实现安全的同时无线信息和功率传输。提议的传输设计被公式化为功率最小化问题,以确保授权用户的信息和能量收集(EH)要求,同时避免未经授权的用户截取信息。采用功率分配接收机架构和非线性EH模型。同时考虑了完美和不完美的信道状态信息(CSI)情况。对于理想的CSI情况,通过应用半定义松弛(SDR)提出了非稳健的设计。当没有用户收集能量时,可以保证全局最优,而当某些用户收集能量时,可以达到近似的全局最优。对于不完全CSI情况,研究了确定性不确定性信道模型下的最坏情况鲁棒设计,提出了一种基于SDR和S过程的求解方法,并研究了随机不确定性信道模型下的统计鲁棒性设计,通过使用SDR和Bernstein型不等式获得全局最优值的上限。我们还针对非鲁棒,最坏情况下的鲁棒性和统计上鲁棒性的设计,通过使用乘数的交替方向方法,提出了一种分布式AN辅助的MCBF设计框架,每个BS都可以通过本地方法优化其自身的发射设计CSI。仿真结果证明了我们的理论分析,表明我们提出的分布式算法收敛到集中式算法获得的最优结果。它还表明,采用非线性EH模型能够避免错误的输出功率并节省BS的功耗。

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