论文标题

RIS辅助旋转系统的保密率最大化:两次尺度的设计方法

Secrecy Rate Maximization of RIS-assisted SWIPT Systems: A Two-Timescale Beamforming Design Approach

论文作者

Zhao, Ming-Min, Xu, Kaidi, Cai, Yunlong, Niu, Yong, Hanzo, Lajos

论文摘要

可重新配置的智能表面(RISS)通过动态调节其反射系数来实现高无源光束成形增强,以增强信号或干扰。他们的就业特别吸引人,可以提高无线安全性和射频(RF)的无线电源传输的效率。在此激励的情况下,我们构思并研究了RIS辅助的同时无线信息和电力传输(SWIPT)系统,该系统分别是从基站(BS)(BS)到信息用户(IU)和多个能源用户(EUS)(EUS)(EUS)。此外,EUS也是潜在的窃听器,可能会窃听BS和IU之间的通信。我们采用了两个时间的传输来降低信号处理的复杂性以及渠道训练开销,并旨在最大化IU达到的平均最差案例保密率。这是通过在BS处共同优化BS的短期发射光束成型向量以及在RIS处的长期相移,在EUS在EUS和BS处所考虑的能量收获约束下。随机优化问题制定的是具有错综复杂的耦合变量的非凸,并且由于存在多个EUS/EavesDroppers而不是平滑的。对于这种具有挑战性的情况,没有标准优化方法。为了应对这一挑战,我们提出了平滑的近似辅助随机连续的凸近似(SA-SSCA)算法。此外,提出了一种低复杂性启发式算法,用于降低计算复杂性而不会过度侵蚀性能。仿真结果表明RIS在确保旋转系统中的效率。还证明了我们提出的算法对相关基准方案的显着性能提高。

Reconfigurable intelligent surfaces (RISs) achieve high passive beamforming gains for signal enhancement or interference nulling by dynamically adjusting their reflection coefficients. Their employment is particularly appealing for improving both the wireless security and the efficiency of radio frequency (RF)-based wireless power transfer. Motivated by this, we conceive and investigate a RIS-assisted secure simultaneous wireless information and power transfer (SWIPT) system designed for information and power transfer from a base station (BS) to an information user (IU) and to multiple energy users (EUs), respectively. Moreover, the EUs are also potential eavesdroppers that may overhear the communication between the BS and IU. We adopt two-timescale transmission for reducing the signal processing complexity as well as channel training overhead, and aim for maximizing the average worst-case secrecy rate achieved by the IU. This is achieved by jointly optimizing the short-term transmit beamforming vectors at the BS as well as the long-term phase shifts at the RIS, under the energy harvesting constraints considered at the EUs and the power constraint at the BS. The stochastic optimization problem formulated is non-convex with intricately coupled variables, and is non-smooth due to the existence of multiple EUs/eavesdroppers. No standard optimization approach is available for this challenging scenario. To tackle this challenge, we propose a smooth approximation aided stochastic successive convex approximation (SA-SSCA) algorithm. Furthermore, a low-complexity heuristic algorithm is proposed for reducing the computational complexity without unduly eroding the performance. Simulation results show the efficiency of the RIS in securing SWIPT systems. The significant performance gains achieved by our proposed algorithms over the relevant benchmark schemes are also demonstrated.

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