Survivability with Adaptive Routing and Reactive Defragmentation in IP-over-EON after A Router Outage

IF 0.8 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
M. Ridwansyah, Syafruddin Syarif, D. Dewiani, S.T. Wardi
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引用次数: 0

Abstract

The occurrence of a router outage in the IP layer can lead to network survivability issues in IP-over-elastic-optical networks with consequent effects on the existing connections used in transiting the router. This usually leads to the application of a path to recover any affected traffic by utilizing the spare capacity of the unaffected lightpath on each link. However, the spare capacity in some links is sometimes insufficient and thus needs to be spectrally expanded. A new lightpath is also sometimes required when it is impossible to implement the first process. It is important to note that both processes normally lead to a large number of lightpath reconfigurations when applied to different unaffected lightpaths. Therefore, this study proposes an adaptive routing strategy to generate the best path with the ability to optimize the use of unaffected lightpaths to perform reconfiguration and minimize the addition of free spectrum during the expansion process. The reactive defragmentation strategy is also applied when it is impossible to apply spectrum expansion because of the obstruction of the neighboring spectrum. This proposed strategy is called lightpath reconfiguration and spectrum expansion with reactive defragmentation (LRSE+RD), and its performance was compared to the first Shortest Path (1SP) as the benchmark without a reactive defragmentation strategy. The simulation conducted for the two topologies with two traffic conditions showed that LRSE+RD succeeded in reducing the lightpath reconfigurations, new lightpath number, and additional power consumption, including the additional operational expense compared to 1SP.
路由器中断后IP-over-EON中自适应路由和反应性碎片整理的生存能力
在IP层发生路由器中断可能导致IP-over-elastic-optical网络中的网络生存性问题,从而对用于传输路由器的现有连接产生影响。这通常导致通过利用每个链路上未受影响的光路的备用容量来恢复任何受影响的流量的应用路径。但是,某些链路的备用容量有时不足,因此需要进行频谱扩展。当不可能实现第一个过程时,有时也需要新的光路。值得注意的是,当应用于不同的未受影响的光路时,这两个过程通常会导致大量的光路重新配置。因此,本研究提出了一种自适应路由策略,以生成最佳路径,并能够优化使用未受影响的光路进行重新配置,并在扩展过程中最大限度地减少自由频谱的增加。当由于邻近谱的阻碍而无法进行谱扩展时,也可以采用反应性碎片整理策略。该策略被称为光路重构和光谱扩展与反应性碎片整理(LRSE+RD),并将其性能与第一最短路径(1SP)作为基准进行了比较。在两种交通条件下对两种拓扑进行的仿真表明,与1SP相比,LRSE+RD成功地减少了光路重构、新光路数量和额外的功耗,包括额外的运营费用。
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来源期刊
CiteScore
1.20
自引率
11.80%
发文量
69
期刊介绍: The International Journal of Electrical and Computer Engineering Systems publishes original research in the form of full papers, case studies, reviews and surveys. It covers theory and application of electrical and computer engineering, synergy of computer systems and computational methods with electrical and electronic systems, as well as interdisciplinary research. Power systems Renewable electricity production Power electronics Electrical drives Industrial electronics Communication systems Advanced modulation techniques RFID devices and systems Signal and data processing Image processing Multimedia systems Microelectronics Instrumentation and measurement Control systems Robotics Modeling and simulation Modern computer architectures Computer networks Embedded systems High-performance computing Engineering education Parallel and distributed computer systems Human-computer systems Intelligent systems Multi-agent and holonic systems Real-time systems Software engineering Internet and web applications and systems Applications of computer systems in engineering and related disciplines Mathematical models of engineering systems Engineering management.
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