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Energy-Efficient Baseband Unit Placement in a Fixed/Mobile Converged WDM Aggregation Network

机译:固定/移动融合WDM聚合网络中的节能基带单元放置

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Energy efficiency is expected to be a key design parameter for next-generation access/aggregation networks. Using a single network infrastructure to aggregate/backhaul both mobile and fixed network traffic, typically referred to as fixed/mobile convergence (FMC), seems a promising strategy to pursue energy efficiency. WDM networks are a prominent candidate to support next-generation FMC network architectures, as they provide huge capacity at relatively low costs and energy consumption. We consider a FMC WDM aggregation network in which the novel concept of “hotelling” of mobile baseband units (BBUs) is employed. The so-called BBU hotelling consists in separating BBUs from their cell sites and consolidating them in single locations, called hotels. As a result, the aggregation network will transport both IP (fixed and mobile) traffic and CPRI (fronthaul) traffic, the latter exchanged between each BBU and its cell site. In this paper, we propose an energy-efficient WDM aggregation network, and we formally define the BBU placement optimization problem, whose objective is to minimize the defined aggregation infrastructure power (AIP). We consider three different network architectures: Bypass, Opaque, and No-Hotel, which feature different placement of BBUs and routing of traffic. By modeling the power contributions of each active device, we study how and how much BBU consolidation, optical bypass, and active traffic aggregation influence the AIP, for all the three architectures. Our results show that, in our case study, the proposed architectures enable savings up to about 60%–65% in dense-urban/urban and about 40% in rural scenarios.
机译:能源效率有望成为下一代接入/汇聚网络的关键设计参数。使用单个网络基础结构来聚合/回传移动和固定网络流量(通常称为固定/移动融合(FMC)),似乎是提高能源效率的一种有前途的策略。 WDM网络是支持下一代FMC网络架构的重要候选者,因为它们以相对较低的成本和能耗提供了巨大的容量。我们考虑一种FMC WDM聚合网络,其中采用了移动基带单元(BBU)的“酒店式”新概念。所谓的BBU旅馆化是指将BBU与它们的蜂窝站点分开,并将它们合并在单个位置(称为酒店)中。结果,汇聚网络将同时传输IP(固定和移动)流量和CPRI(前传)流量,后者在每个BBU和其基站之间交换。在本文中,我们提出了一种节能的WDM聚合网络,并正式定义了BBU布局优化问题,其目的是使定义的聚合基础架构功耗(AIP)最小化。我们考虑三种不同的网络体系结构:旁路,不透明和No-Hotel,它们具有不同的BBU放置和流量路由。通过对每个有源设备的功率贡献进行建模,我们研究了对于所有三种架构,BBU整合,光旁路和有源业务聚合如何以及在多大程度上影响了AIP。我们的结果表明,在我们的案例研究中,所提议的体系结构可以在密集的城市/城市中节省多达60%–65%的费用,而在农村地区则可以节省约40%。

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