弹性光链路中碎片损耗缓解的数论框架

IF 1.8 4区 计算机科学 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS Photonic Network Communications Pub Date : 2022-03-11 DOI:10.1007/s11107-022-00962-2
Helio Waldman, Raul C. Almeida, Rodrigo C. Bortoletto, Vinicius F. de Souza
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引用次数: 3

摘要

本文在考虑增量规则和动态到达规则和永久规则的情况下,研究了两类业务频谱分配中最小总时隙空闲时间的问题。首先证明了在一些链路状态下使用非贪婪频谱分配策略可以避免增量流量下的死锁,这些策略是根据连接请求大小的知识识别的,从而使总空闲保持有限和最小。然后,将死锁避免的概念扩展到动态流量中,提出了一种算法,通过适当的贪婪流量感知分配策略来减少碎片损失。由于死锁在动态流量下不是永久的,因此不使用分配拒绝来避免。相反,所提出的算法只是不愿意分配功能失调的、容易死锁的空洞,而倾向于在可用的情况下分配功能空洞。如果允许多次搜索,也可以应用其他优先级。
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A number-theoretic framework for the mitigation of fragmentation loss in elastic optical links

This paper addresses the problem of minimizing total slot idle time in assigning spectrum to a 2-class traffic, considering both incremental and dynamic arrival and permanence rules. Deadlock avoidance under incremental traffic is first shown to be possible with the use of non-greedy spectrum assignment policies in some link states which are identified from knowledge of the connection request sizes, thus keeping total idleness finite and minimal. Then, the concept of deadlock avoidance is extended to dynamic traffic with the purpose of proposing an algorithm that mitigates fragmentation losses with appropriate greedy traffic-aware assignment policies. Since deadlock is not permanent under dynamic traffic, avoidance by assignment denial is not used. Instead, the proposed algorithm is only reluctant to assign dysfunctional, deadlock-prone voids in favour of functional voids if they are available. Other priorities may also apply if multiple searches are allowed.

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来源期刊
Photonic Network Communications
Photonic Network Communications 工程技术-电信学
CiteScore
4.10
自引率
5.90%
发文量
33
审稿时长
12 months
期刊介绍: This journal publishes papers involving optical communication networks. Coverage includes network and system technologies; network and system architectures; network access and control; network design, planning, and operation; interworking; and application design for an optical infrastructure This journal publishes high-quality, peer-reviewed papers presenting research results, major achievements, and trends involving all aspects of optical network communications. Among the topics explored are transport, access, and customer premises networks; local, regional, and global networks; transoceanic and undersea networks; optical transparent networks; WDM, HWDM, and OTDM networks and more.
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