优化弹性光网络中虚拟光网络的能量和频谱效率

IF 1.9 4区 计算机科学 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS Optical Switching and Networking Pub Date : 2020-05-01 DOI:10.1016/j.osn.2020.100568
Wenting Wei , Huaxi Gu , Achille Pattavina , Jiru Wang , Yi Zeng
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引用次数: 5

摘要

弹性光网络由于其高传输速率、细粒度和灵活的频谱分配,近年来被认为是支持新兴应用日益增长的带宽需求的一种有前途的基础设施。随着业务量的爆炸式增长,优化能量和频谱效率已成为绿色弹性光网络的关键问题,这与云业务的可持续发展密切相关。本文主要研究弹性光网络中虚拟光网络的能量和频谱效率联合优化问题。提出了一种称为ESE的启发式算法,以提高能量和频谱效率,同时保持较高的接受率。考虑影响能量和频谱效率的因素,优选可行的最短路径;同时,根据传输距离以及能量和频谱消耗之间的权衡,动态选择合适的调制格式。为了提高虚拟网络请求的接受率,采用了双重映射,通过多维资源集成映射来加强嵌入过程。仿真结果表明,与两种基线算法相比,该算法可以实现能量和频谱的联合效率,且阻塞概率明显降低。
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Optimizing energy and spectrum efficiency of virtual optical network embedding in elastic optical networks

Elastic optical network has recently been deemed as a promising infrastructure to support the ever-increasing bandwidth demand of emerging applications, due to its high transmission rate, fine-grained and flexible spectrum allocation. With the explosive growth of traffic, optimizing energy and spectrum efficiency has become a critical issue for green elastic optical networks, which is closely related to the sustainable development of cloud services. This paper focuses on joint optimization of energy and spectrum efficiency for virtual optical network embedding in elastic optical networks. A heuristic algorithm, termed ESE, is presented to improve energy and spectrum efficiency while keeping a high acceptance rate. With consideration of factors influencing energy and spectrum efficiency, a feasible shortest path is preferred; meanwhile, an appropriate modulation format is dynamically selected according to transmission distance and the trade-off between energy and spectrum consumption. To improve the acceptance rate of virtual network requests, a dual mapping is employed to reinforce the embedding process by multi-dimensional resources integrated mapping. The simulation results show that the proposed algorithm can achieve a joint energy and spectrum efficiency with a much lower blocking probability compared with two baseline algorithms.

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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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