基于低时延功率业务的5G接入选择策略

Shang Li, Y. Li, Weizhao Liu, Xiaomin Wei
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引用次数: 0

摘要

本文研究了电力线通信信道中分速多址系统的传输方案。该方案由一个发送方和两个用户组成,所有用户的信号在发送方叠加。利用连续凸近似方法,通过优化波束形成矢量和速率分配,使系统的总可达速率最大化,提出了一种基于连续凸近似的优化方法。结果表明,与PLC-NOMA相比,PLC-RSMA适用于各种信道方向(无论信道方向是对齐还是正交)。PLC-RSMA可以获得更好的传输速率性能,并且随着信噪比的增加,PLC-RSMA的速率性能增益越来越明显。在设定的参数下,当信噪比为30dB时,PLC-RSMA的相对速率性能比PLC-NOMA提高了至少37%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
5G access selection strategy based on low-delay power service
In this paper, a transmission scheme of rate-split multiple access system in a power line communication channel is considered. The scheme consists of one sender and two users, and the signal for all users is superimposed at the sender. Using the continuous convex approximation method, we aim to maximize the total achievable rate of the system by optimizing the beamforming vector and rate allocation, and then propose a method based on continuous convex approximation to solve the optimization problem. The results show that, compared with PLC-NOMA, PLC-RSMA is suitable for various channel directions (whether the channel directions are aligned or orthogonal). PLC-RSMA can achieve better transmission rate performance, and with the increase of SNR, the rate performance gain of PLC-RSMA becomes more and more obvious. At the set parameters, when SNR is 30dB, the relative rate performance of PLC-RSMA is improved by at least 37% compared to PLC-NOMA.
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