Joint Design of Power Control and SIC Decoding Order for Max-Min Fairness optimization in Uplink NOMA Systems

Jongmin Kim, Junbeom Kim, Seok-Hwan Park
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引用次数: 6

Abstract

Non-orthogonal multiple access (NOMA) is an effective technique to improve spectral efficiency and connectivity level of multi-user systems by means of successive interference cancellation (SIC) decoding. However, the optimization of NOMA scheme for uplink systems has not been well addressed in the literature. This work tackles the joint design of the users’ transmit power levels and the SIC decoding order at the BS for a multi-user uplink system. Since it is difficult to find the optimal solution, an iterative algorithm is proposed that alternately optimizes transmit powers and SIC decoding order until convergence is reached. The optimization of transmit powers is addressed by adopting the majorization minimization (MM) approach. The SIC decoding order is designed by evaluating per-user mean squared error (MSE) at each SIC decoding step. Numerical results are presented to identify the configurations in which the proposed design achieves relevant gains.
上行NOMA系统中最大最小公平性优化的功率控制和SIC译码顺序联合设计
非正交多址(NOMA)是一种通过连续干扰抵消(SIC)译码提高多用户系统频谱效率和连接水平的有效技术。然而,文献中并没有很好地解决上行系统的NOMA方案优化问题。本工作解决了多用户上行系统的用户发射功率水平和BS的SIC解码顺序的联合设计。由于难以找到最优解,提出了一种迭代算法,交替优化发射功率和SIC解码顺序,直到收敛。采用最大极小化方法对发射功率进行优化。SIC解码顺序是通过评估每个SIC解码步骤的每用户均方误差(MSE)来设计的。给出了数值结果,以确定所提出的设计实现相关增益的配置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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