A crosstalk-consideration spectrum assignment algorithm in SDM-EONs based on exact multi-flow strategy

IF 2.6 3区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Junling Yuan , Xuyang Hao , Xuhong Li , Qikun Zhang , Zixuan Wu
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引用次数: 0

Abstract

One of the core challenges of space-division-multiplexed elastic optical networks (SDM-EONs), as a cutting-edge technology for future optical backbone networks, lies in efficiently dealing with the complexities of routing, modulation, spectrum and core allocation (RMSCA). In this framework, spectrum fragmentation and inter-core crosstalk become the key constraints on network performance. In this paper, we innovatively propose a crosstalk representation and design dynamic spectrum fragmentation optimization and accurate combinatorial shunt optimization algorithms. These algorithms effectively mitigate the spectrum fragmentation problem by intelligently integrating the abandoned spectrum fragments in the network. Simulation verification shows that the two algorithms proposed in this paper exhibit significant advantages in significantly reducing the bandwidth blocking probability.
基于精确多流策略的 SDM-EON 中考虑串扰的频谱分配算法
空间分复用弹性光网络(SDM-EON)是未来光骨干网的尖端技术,其核心挑战之一在于如何有效处理路由、调制、频谱和核心分配(RMSCA)等复杂问题。在此框架下,频谱碎片和内核间串扰成为网络性能的关键制约因素。本文创新性地提出了串扰表示法,并设计了动态频谱碎片优化和精确组合分流优化算法。这些算法通过智能整合网络中被遗弃的频谱碎片,有效缓解了频谱碎片问题。仿真验证表明,本文提出的两种算法在显著降低带宽阻塞概率方面具有明显优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Optical Fiber Technology
Optical Fiber Technology 工程技术-电信学
CiteScore
4.80
自引率
11.10%
发文量
327
审稿时长
63 days
期刊介绍: Innovations in optical fiber technology are revolutionizing world communications. Newly developed fiber amplifiers allow for direct transmission of high-speed signals over transcontinental distances without the need for electronic regeneration. Optical fibers find new applications in data processing. The impact of fiber materials, devices, and systems on communications in the coming decades will create an abundance of primary literature and the need for up-to-date reviews. Optical Fiber Technology: Materials, Devices, and Systems is a new cutting-edge journal designed to fill a need in this rapidly evolving field for speedy publication of regular length papers. Both theoretical and experimental papers on fiber materials, devices, and system performance evaluation and measurements are eligible, with emphasis on practical applications.
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