IREE Oriented Green 6G Networks: A Radial Basis Function-Based Approach

Tao Yu;Pengbo Huang;Shunqing Zhang;Xiaojing Chen;Yanzan Sun;Xin Wang
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Abstract

In order to provide design guidelines for energy efficient 6G networks, we propose a novel radial basis function (RBF) based optimization framework to maximize the integrated relative energy efficiency (IREE) metric. Different from the conventional energy efficient optimization schemes, we maximize the transformed utility for any given IREE using spectrum efficiency oriented RBF network and gradually update the IREE metric using proposed Dinkelbach’s algorithm. The existence and uniqueness properties of RBF networks are provided, and the convergence conditions of the entire framework are discussed as well. Through some numerical experiments, we show that the proposed IREE outperforms many existing SE or EE oriented designs and find a new Jensen-Shannon (JS) divergence constrained region, which behaves differently from the conventional EE-SE region. Meanwhile, by studying IREE-SE trade-offs under different traffic requirements, we suggest that network operators shall spend more efforts to balance the distributions of traffic demands and network capacities in order to improve the IREE performance, especially when the spatial variations of the traffic distribution are significant.
面向 IREE 的绿色 6G 网络:基于径向基函数的方法
为了提供高能效 6G 网络的设计指南,我们提出了一种基于径向基函数 (RBF) 的新型优化框架,以最大化综合相对能效 (IREE) 指标。与传统的高能效优化方案不同,我们使用面向频谱效率的 RBF 网络最大化任何给定 IREE 的转换效用,并使用提议的 Dinkelbach 算法逐步更新 IREE 指标。我们提供了 RBF 网络的存在性和唯一性,并讨论了整个框架的收敛条件。通过一些数值实验,我们发现所提出的 IREE 优于许多现有的面向 SE 或 EE 的设计,并发现了一个新的 Jensen-Shannon (JS) 发散约束区域,其表现与传统的 EE-SE 区域不同。同时,通过研究不同流量需求下 IREE-SE 的权衡,我们建议网络运营商应更努力地平衡流量需求和网络容量的分布,以提高 IREE 性能,尤其是当流量分布的空间变化较大时。
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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