北京邮电大学学报

  • EI核心期刊

北京邮电大学学报

• •    

STAR-RIS辅助上行NOMA系统中最大化能量效率的方法

田心记,孟浩然   

  1. 河南理工大学
  • 收稿日期:2023-11-23 修回日期:2024-02-27 发布日期:2024-07-18
  • 通讯作者: 田心记
  • 基金资助:
    基于MIMO技术的超密集网络分层干扰消除技术研究

A method to maximize Energy Efficiency for STAR-RIS assisted Uplink NOMA Systems

  • Received:2023-11-23 Revised:2024-02-27 Published:2024-07-18
  • Contact: TIAN Xin-Jin

摘要: 对于同时透射和反射的智能可重构表面(STAR-RIS)辅助的上行非正交多址接入(NOMA)系统,提出了一种最大化能量效率的方法。首先构建最大化能量效率的优化问题,优化参数为基站波束赋形、STAR-RIS相移、用户功率和时间分配;然后通过推导波束赋形与STAR-RIS相移等参数之间的关系和用户所需的最低功率,简化该优化问题;最后,用迭代的方法交替优化STAR-RIS相移、功率分配和时间分配,在每次迭代过程中用半正定规划法(SDP)优化STAR-RIS相移、Dinkelbach算法优化功率、函数极值法优化时间分配。仿真结果显示,在时间切换协议中时间分配对能量效率影响较小,STAR-RIS相移对能量效率影响较大。

关键词: 非正交多址接入, 智能反射面, 能量效率, 功率, 相移

Abstract: A method to maximize energy efficiency is proposed for uplink non-orthogonal multiple access (NOMA) systems assisted by simultaneously transmitting and reflecting intelligent surface(STAR-RIS). Firstly, the optimization problem of maximizing energy efficiency is constructed, with base station beamforming, STAR-RIS phase shift, users’ power and time allocation as variables. Then, the optimization problem is sim-plified by deducing the relationship between beamforming and STAR-RIS phase shift and the minimum power required by the users. Finally, an iterative method is proposed to optimize STAR-RIS phase shift, power al-location and time allocation alternately. In each iteration, semi-definite programming method (SDP) is used to optimize STAR-RIS phase shift, Dinkelbach algorithm to optimize power allocation, and function extremal method to optimize time allocation. The simulation results show that for the time switching protocol, time allocation has little effect on energy efficiency, while random phase shift has great effect on energy efficiency.

Key words: NOMA, STAR-RIS, energy efficiency, power, phase shift

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