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Time based resource-consumption-aware spectrum assignment for multicast traffic in elastic optical networks

机译:基于时间的资源消耗感知频谱分配,用于弹性光网络中的多播流量

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摘要

Given the importance of multicast traffic in current optical networks, many effective multicast routing and spectrum assignment (MRSA) algorithms have been proposed to achieve efficient multicast transmission in elastic optical networks (EONs). However, most of these MRSA algorithms were focus on optimizing only the spectrum resources allocated to multicast service requests, but ignored some fragmented spectrum resources remained after spectrum allocation. Although some fragment-aware MRSA algorithms were proposed for EONs to restrain the fragmented spectrum generated in provisioning multicast transmission, they could hardly precisely compute the amount of the fragmented resources while optimizing the allocated resources for the multicast transmission in EONs. This is because that the fragmented and the allocated spectrum resources always have different duration characteristics. In this paper, we propose a time-based composite-consumption-aware (TCCA) MRSA algorithm to optimize both the fragmented and the allocated resources consumed by the multicast transmission in EONs. By additionally taking the holding time of each multicast service request into account, the proposed algorithm can comprehensively optimize both the fragmented and the allocated resource consumption for the multicast transmission in EONs. Since the comprehensive resource consumption, including both the fragmented and the allocated resource consumption, is optimized by the proposed TCCA algorithm, more available resources can be remained for the subsequent multicast requests, which can increase the request blocking performance in EONs. Simulation results verify that the proposed algorithm can reduce the comprehensive resource consumption for the multicast transmission in EONs with low request blocking probability.
机译:给定多播流量的当前光网络的重要性,许多有效的多播路由和频谱分配(MRSA)的算法已被提出以实现在弹性光网络(亿万)有效的多播传输。但是,这些MRSA算法中的大多数都集中在仅优化分配给组播服务请求的频谱资源,但忽略了频谱分配后仍然存在的一些碎片频谱资源。尽管一些片段感知MRSA算法提出永世抑制在供应多播传输所产生的零散频谱,他们很难准确地计算出零散的资源量,同时优化分配的资源在亿万多播传输。这是因为碎片化和分配的频谱资源总是具有不同的持续时间特征。在本文中,我们提出了一个基于时间的复合消费感知(TCCA)MRSA算法同时优化碎片,并且在亿万多播传输所消耗的分配的资源。通过另外考虑每个组播服务请求的保持时间,所提出的算法可以全面地优化用于在EON中的多播传输的碎片化和分配的资源消耗。由于综合资源消耗,包括零散和分配资源的消耗,通过所提出的TCCA算法进行优化,更多的可用资源可以仍是后续的组播请求,这样可以增加请求阻挡在亿万年的表现。仿真结果验证了所提出的算法可以降低具有低要求阻塞概率的EON中多播传输的综合资源消耗。

著录项

  • 来源
    《Optical fiber technology》 |2020年第10期|102325.1-102325.7|共7页
  • 作者

    Qiu Yang;

  • 作者单位

    Southwest Minzu Univ Key Lab State Ethn Affairs Commiss Elect & Inform Coll Elect & Informat Engn Chengdu Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-19 01:59:42

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