SDN-based band-adaptive quality assurance scheme in support of heterogenous B5G services over sliceable multi-band optical networks

IF 1.9 4区 计算机科学 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS Optical Switching and Networking Pub Date : 2023-02-01 DOI:10.1016/j.osn.2022.100721
Albert Pagès, Fernando Agraz, Salvatore Spadaro
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引用次数: 4

Abstract

The rise of traffic intensive services and applications is pushing the limits of conventional single band Wavelength Division Multiplexing (WDM) optical networks. As an answer to this challenge, new data plane technologies are being investigated. Multi-band optical networks have raised as a very interesting candidate due to the potential increased capacity they offer thanks to the exploitation of multiple bands of the optical spectrum. Considering the whole telecom ecosystem, multi-band optical networks will coexist with other technological segments (e.g., Radio Access Network (RAN)) with the aim of provisioning services across the end-to-end infrastructure. With the advent of 5G and beyond 5G (B5G) architectures, novel provisioning paradigms are taking preponderance, such as the case of network slicing, which represents a radical paradigm change with respect to legacy business and provisioning models. As such, proper solutions for supporting network slice provisioning and runtime maintenance at the data plane are required. With this in mind, in this paper we present a control and orchestration architecture for the configuration and maintenance of network slices in multi-band optical networks, in support of B5G end-to-end services. Indeed, quality assurance and maintenance at all levels is seen as a cornerstone in B5G architectures. Thus, proper mechanisms adapted to the nature of the underlying sliceable multi-band data plane are required to ensure the quality of deployed slices. In this regard, we also present a novel band-adaptive protection scheme which takes advantage of the properties of the multi-band data plane so as to enhance the robustness of slices against quality degradations. We showcase the provisioning and maintenance of multi-band optical network slices by means of an experimental demonstration in a real testbed deployed at our premises. In addition, we evaluate the performance of the proposed band-adaptive protection scheme for slice quality assurance in front of other strategies by means of extensive simulation analysis in larger network scenarios.

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支持可切片多波段光网络异构B5G业务的基于sdn的频带自适应质量保证方案
业务密集型服务和应用的兴起正在突破传统单波段波分复用(WDM)光网络的极限。为了应对这一挑战,正在研究新的数据平面技术。多波段光网络由于利用了多个波段的光谱,其容量可能会增加,因此已成为一个非常有趣的候选者。考虑到整个电信生态系统,多波段光网络将与其他技术领域(例如,无线电接入网络(RAN))共存,目的是在端到端基础设施中提供服务。随着5G和5G(B5G)架构的出现,新的供应模式正在占据主导地位,例如网络切片,这代表着传统业务和供应模式的根本范式变化。因此,需要适当的解决方案来支持数据平面上的网络切片供应和运行时维护。考虑到这一点,在本文中,我们提出了一种控制和协调架构,用于多频带光网络中网络切片的配置和维护,以支持B5G端到端服务。事实上,所有级别的质量保证和维护都被视为B5G体系结构的基石。因此,需要适合底层可切片多频带数据平面性质的适当机制来确保所部署切片的质量。在这方面,我们还提出了一种新的频带自适应保护方案,该方案利用了多频带数据平面的特性,以增强切片对质量退化的鲁棒性。我们通过在部署在我们场所的真实测试台上进行实验演示,展示了多波段光网络切片的供应和维护。此外,我们通过在更大的网络场景中进行广泛的仿真分析,评估了所提出的用于切片质量保证的频带自适应保护方案在其他策略之前的性能。
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来源期刊
Optical Switching and Networking
Optical Switching and Networking COMPUTER SCIENCE, INFORMATION SYSTEMS-OPTICS
CiteScore
5.20
自引率
18.20%
发文量
29
审稿时长
77 days
期刊介绍: Optical Switching and Networking (OSN) is an archival journal aiming to provide complete coverage of all topics of interest to those involved in the optical and high-speed opto-electronic networking areas. The editorial board is committed to providing detailed, constructive feedback to submitted papers, as well as a fast turn-around time. Optical Switching and Networking considers high-quality, original, and unpublished contributions addressing all aspects of optical and opto-electronic networks. Specific areas of interest include, but are not limited to: • Optical and Opto-Electronic Backbone, Metropolitan and Local Area Networks • Optical Data Center Networks • Elastic optical networks • Green Optical Networks • Software Defined Optical Networks • Novel Multi-layer Architectures and Protocols (Ethernet, Internet, Physical Layer) • Optical Networks for Interet of Things (IOT) • Home Networks, In-Vehicle Networks, and Other Short-Reach Networks • Optical Access Networks • Optical Data Center Interconnection Systems • Optical OFDM and coherent optical network systems • Free Space Optics (FSO) networks • Hybrid Fiber - Wireless Networks • Optical Satellite Networks • Visible Light Communication Networks • Optical Storage Networks • Optical Network Security • Optical Network Resiliance and Reliability • Control Plane Issues and Signaling Protocols • Optical Quality of Service (OQoS) and Impairment Monitoring • Optical Layer Anycast, Broadcast and Multicast • Optical Network Applications, Testbeds and Experimental Networks • Optical Network for Science and High Performance Computing Networks
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