A Proactive Algorithm for the Mitigation of Fragmentation Losses in Elastic Links

H. Waldman, R. C. Bortoletto, Vinicius F. de Souza, R. C. Almeida
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Abstract

This paper presents simulations of a novel algorithm for spectrum assignment on an elastic link that achieves reductions of nearly 50% of the losses incurred under the first-fit algorithm with the same random sequence of requests. Instead of trying to reduce the fragmentation itself, the new algorithm aims to optimize the matching between each request and the spectral void chosen for its assignment. For this purpose, it prioritizes functional voids over dysfunctional ones, which are deferred in order to maximize their chance of recovering functionality through coalescence with neighbouring voids brought about by connection terminations. The simulations were performed for a 2-class traffic with requests for bitrates of 400 Gb/s and 1 Tb/s, with uniform and non-uniform traffic profiles, and with slot numbers optimized for short (400 km), intermediate (1600 km) and long (8000 km) distances.
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一种缓解弹性链路碎片损失的主动算法
本文给出了一种新的弹性链路频谱分配算法的仿真,在相同随机请求序列下,该算法的频谱分配损失比第一拟合算法减少了近50%。新算法的目标不是试图减少碎片本身,而是优化每个请求与为其分配选择的光谱空隙之间的匹配。为此,它优先考虑功能性空洞,而不是功能失调的空洞,这些功能失调的空洞被推迟,以便通过与连接终止带来的邻近空洞合并,最大限度地提高它们恢复功能的机会。仿真对象为2类流量,请求比特率分别为400 Gb/s和1 Tb/s,具有均匀和非均匀的流量配置文件,并对短距离(400公里)、中距离(1600公里)和长距离(8000公里)进行了槽号优化。
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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