NOMA变速器可重构智能曲面设计的透视方法:理论研究

V. Kontorovich
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引用次数: 2

摘要

本文提出的方法(范式)受到两个基本思想的启发:将MIMO-RIS-NOMA通信信道假设为具有衰落的色散信道,并将后者用广义Kronecker信道模型(GKCM)表示,采用基于利用“通用”特征基的“正交化方法”,以长球面波函数(pswf)的形式表示。换句话说,该方法的本质是通过一组人为创建的正交波传播轨迹来表示MIMO-RIS-NOMA通道,这些波传播轨迹由RIS的耦合矩阵(CM)连接。RIS的目标(通过选择特定CM元素)是为NOMA用户提供一个解码系统,为每个用户提供所需的信噪比值,以保证成功的解码处理。对这一范式进行了理论分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Perspective method for reconfigurable intelligent surface design for NOMA transmission: Theoretical study
The method (paradigm) presented here was inspired by two basic ideas: the assumption of the MIMO-RIS-NOMA communication channel as a dispersive channel with fading, and the representation of the latter by means of the generalized Kronecker channel model (GKCM), applying the “orthogonalization approach” based on utilization of the “universal” eigen basis in the form of prolate spheroidal wave functions (PSWFs). In other words, the essence of the approach is representing the MIMO-RIS-NOMA channel by means of a finite set of artificially created orthogonal trajectories for wave propagation, which are connected by the coupling matrix (CM) of the RIS. The goal for RIS (through the selection of specific CM elements) is to provide a decoding system for the NOMA users with the required SNR values for each user to guarantee successful decoding processing. A theoretical analysis of this paradigm is presented.
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