论文标题

在不完美的CSI下,通过可重构双功能表面来保护Noma网络

Safeguarding NOMA Networks via Reconfigurable Dual-Functional Surface under Imperfect CSI

论文作者

Wang, Wen, Ni, Wanli, Tian, Hui, Yang, Zhaohui, Huang, Chongwen, Wong, Kai-Kit

论文摘要

本文研究了使用可重构双功能表面的使用,以确保非正交多访问(NOMA)网络中的全空间安全传输。在存在窃听器的情况下,从基站到合法用户的下行链路通信得到了同时传输和反映可重新配置的可重构智能表面(Star-ris)的,其中三个实用的操作协议,即能量分解(ES),模式选择(MS)和时间分配(TS),研究了。研究了所有通道的不完善的通道状态信息(CSI),研究了功率分配,主动和被动边际形成的关节优化,以最大程度地提高保密能效率(请参阅)。对于ES,通过使用S过程和一般的标志定义性近似于半无限约束,通过交替的优化框架解决了问题。此外,提出的算法通过解决混合企业非凸问题扩展到MS协议。对于TS,提出了两层迭代方法。仿真结果表明:1)所提出的Star-Ris辅助NOMA网络能够提供比传统的RIS相对方高达33.6 \%的可提供的; 2)TS和ES方案通常分别针对低功率和高功率域而优选; 3)CSI估计的准确性和位分辨率功耗对于从星际领域提供的SEE福利至关重要。

This paper investigates the use of the reconfigurable dual-functional surface to guarantee the full-space secure transmission in non-orthogonal multiple access (NOMA) networks. In the presence of eavesdroppers, the downlink communication from the base station to the legitimate users is safeguarded by the simultaneously transmitting and reflecting reconfigurable intelligent surface (STAR-RIS), where three practical operating protocols, namely energy splitting (ES), mode selection (MS), and time splitting (TS), are studied. The joint optimization of power allocation, active and passive beamforming is investigated to maximize the secrecy energy efficiency (SEE), taking into account the imperfect channel state information (CSI) of all channels. For ES, by approximating the semi-infinite constraints with the S-procedure and general sign-definiteness, the problem is solved by an alternating optimization framework. Besides, the proposed algorithm is extended to the MS protocol by solving a mixed-integer non-convex problem. While for TS, a two-layer iterative method is proposed. Simulation results show that: 1) The proposed STAR-RIS assisted NOMA networks are able to provide up to 33.6\% higher SEE than conventional RIS counterparts; 2) TS and ES protocols are generally preferable for low and high power domain, respectively; 3) The accuracy of CSI estimation and the bit resolution power consumption are crucial to reap the SEE benefits offered by STAR-RIS.

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