Interference and QoS-Aware Resource Allocation Considering DAS Behavior for C-RAN Power Minimization

IF 2.1 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE IEEE Canadian Journal of Electrical and Computer Engineering Pub Date : 2022-12-22 DOI:10.1109/ICJECE.2022.3217894
Fatma Marzouk;João Paulo Barraca;Ayman Radwan
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引用次数: 1

Abstract

This work aims to minimize the power consumption of cloud virtualization components by addressing the important challenge of designing allocation schemes that cater for both radio and computational resources in a virtualized cloud-based radio environment. Unlike previous efforts, we consider the realistic behavior of radio resource heads (RRHs) associated with one baseband unit (BBU), acting as a distributed antenna system (DAS). We first formulate the admission control (AC) and the RRH–BBU mapping problem, subject to constraints on user throughput requirements, computational capacity in the BBU pool, and according to the assumption of DAS behavior. As the optimal solution is practically intractable for large-scale dynamic networks, we propose a two-level resource allocation framework, based on two developed algorithms: a first one for AC at the radio level and a second one for RRH–BBU mapping at the computational level. The two algorithms are designed to allow both the levels to consider each other’s constraints and particularities. Results obtained from an extensive simulation-based performance evaluation show the high performance of our proposal in terms of radio-related metrics, number of accepted users, power saving, and energy and spectrum efficiency, compared with three baseline reference schemes.
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考虑DAS行为的C-RAN功率最小化干扰和QoS感知资源分配
这项工作旨在通过解决在基于云的虚拟无线电环境中设计既能满足无线电资源又能满足计算资源的分配方案这一重要挑战,最大限度地减少云虚拟化组件的功耗。与之前的工作不同,我们考虑了与一个基带单元(BBU)相关联的无线电资源头(RRH)的实际行为,该基带单元充当分布式天线系统(DAS)。我们首先制定了准入控制(AC)和RRH–BBU映射问题,受用户吞吐量要求、BBU池中计算能力的约束,并根据DAS行为的假设。由于大规模动态网络的最优解实际上很难解决,我们提出了一个基于两种已开发算法的两级资源分配框架:第一种算法用于无线电级别的AC,第二种算法用于计算级别的RRH–BBU映射。这两种算法的设计允许两个级别考虑彼此的约束和特殊性。从广泛的基于模拟的性能评估中获得的结果表明,与三个基线参考方案相比,我们的提案在无线电相关指标、可接受用户数量、节能以及能源和频谱效率方面具有较高的性能。
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