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A subcarrier-slot partition scheme for wavelength assignment in elastic optical networks

机译:弹性光网络中波长分配的子载波划分方案

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In elastic optical networks (EONs), bandwidth fragmentation refers to the existence of non-aligned and noncontiguous subcarrier slots (unused) in the set of all subcarrier slots. Since wavelengths for a connection must be allocated on contiguous subcarrier slots, these non-aligned and noncontiguous available subcarrier slots could cause bandwidth blocking. This paper proposes a subcarrier-slot partition scheme for wavelength assignment in EONs that can yield more contiguous aligned available subcarrier slots, which reduces the bandwidth blocking probability. On this scheme, the total set of subcarrier slots is separated into several partitions and wavelengths are assigned to each partition based on the links utilized by particular connections. Numerical results from a simulation show that the proposed scheme with a suitable wavelength assignment policy outperforms the conventional scheme in terms of bandwidth blocking. We investigate the effect of different wavelength assignment policies in the proposed scheme. The results show that the first-last fit assignment policy gives lower bandwidth blocking probability than the first fit assignment policy.
机译:在弹性光网络(EONS)中,带宽碎片是指在所有子载波插槽的集合中存在非对齐和非连续的子载波插槽(未使用)。由于必须在连续的子载波时隙上分配连接的波长,因此这些不对齐和非连续可用的子载波插槽可能导致带宽阻塞。本文提出了一种用于波长分配的子载波插槽分区方案,其可以产生更连续的对齐可用子载波时隙,这降低了带宽阻塞概率。在该方案上,将总子载波插槽分开到几个分区中,并且基于由特定连接使用的链路分配波长。仿真的数值结果表明,在带宽阻塞方面,具有合适波长分配策略的提出方案优于传统方案。我们调查不同波长分配策略在提出的方案中的影响。结果表明,第一次配售策略提供比第一个适合分配策略更低的带宽阻塞概率。

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