On Flexible Placement of O-CU and O-DU Functionalities in Open-RAN Architecture

IF 5.4 2区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS IEEE Transactions on Network and Service Management Pub Date : 2024-10-09 DOI:10.1109/TNSM.2024.3476939
Hiba Hojeij;Mahdi Sharara;Sahar Hoteit;Véronique Vèque
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Abstract

Open Radio Access Network (O-RAN) has recently emerged as a new trend for mobile network architecture. It is based on four founding principles: disaggregation, intelligence, virtualization, and open interfaces. In particular, RAN disaggregation involves dividing base station virtualized networking functions (VNFs) into three distinct components - the Open-Central Unit (O-CU), the Open-Distributed Unit (O-DU), and the Open-Radio Unit (O-RU) - enabling each component to be implemented independently. Such disaggregation improves system performance and allows rapid and open innovation in many components while ensuring multi-vendor operability. As the disaggregation of network architecture becomes a key enabler of O-RAN, the deployment scenarios of VNFs on O-RAN clouds become critical. In this context, we propose an optimal and dynamic placement scheme of the O-CU and O-DU functionalities on the edge or in regional O-clouds. The objective is to maximize users’ admittance ratio by considering mid-haul delay and server capacity requirements. We develop an Integer Linear Programming (ILP) model for O-CU and O-DU placement in O-RAN architecture. Additionally, we introduce a Recurrent Neural Network (RNN) heuristic model that can effectively emulate the behavior of the ILP model. The results are promising in terms of improving users’ admittance ratio by up to 10% when compared to baselines from state-of-the-art. Moreover, our proposed model minimizes the deployment costs and increases the overall throughput. Furthermore, we assess the optimal model’s performance across diverse network conditions, including variable functional split options, link capacity bottlenecks, and channel bandwidth limitations. Our analysis delves into placement decisions, evaluating admittance ratio, radio and link resource utilization, and quantifying the impact on different service types.
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论开放式局域网架构中 O-CU 和 O-DU 功能的灵活布局
开放无线接入网(O-RAN)是近年来移动网络架构发展的新趋势。它基于四个基本原则:分解、智能、虚拟化和开放接口。特别是,RAN分解涉及将基站虚拟化网络功能(vnf)划分为三个不同的组件——开放中心单元(O-CU)、开放分布式单元(O-DU)和开放无线电单元(O-RU)——使每个组件能够独立实现。这种分解提高了系统性能,并允许在许多组件中快速和开放的创新,同时确保多供应商的可操作性。随着网络架构的分解成为O-RAN的关键推动因素,vnf在O-RAN云上的部署场景变得至关重要。在此背景下,我们提出了一种O-CU和O-DU功能在边缘或区域o -cloud上的最佳动态放置方案。目标是通过考虑中程延迟和服务器容量要求来最大化用户准入比。我们开发了一个整数线性规划(ILP)模型,用于O-CU和O-DU在O-RAN架构中的放置。此外,我们引入了一个递归神经网络(RNN)启发式模型,可以有效地模拟ILP模型的行为。与最先进的基线相比,结果很有希望将用户的准入率提高10%。此外,我们提出的模型最大限度地降低了部署成本并提高了总体吞吐量。此外,我们评估了最优模型在不同网络条件下的性能,包括可变功能分裂选项、链路容量瓶颈和信道带宽限制。我们的分析深入到安置决策,评估准入比率,无线电和链路资源利用率,并量化对不同服务类型的影响。
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来源期刊
IEEE Transactions on Network and Service Management
IEEE Transactions on Network and Service Management Computer Science-Computer Networks and Communications
CiteScore
9.30
自引率
15.10%
发文量
325
期刊介绍: IEEE Transactions on Network and Service Management will publish (online only) peerreviewed archival quality papers that advance the state-of-the-art and practical applications of network and service management. Theoretical research contributions (presenting new concepts and techniques) and applied contributions (reporting on experiences and experiments with actual systems) will be encouraged. These transactions will focus on the key technical issues related to: Management Models, Architectures and Frameworks; Service Provisioning, Reliability and Quality Assurance; Management Functions; Enabling Technologies; Information and Communication Models; Policies; Applications and Case Studies; Emerging Technologies and Standards.
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