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Resource Allocation Algorithm Based on Dynamic Quantitative Impairment With Low-Fragmentation in SDM-EONs

delete2025-09-04
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PRE
AI
H
Haoyu Yang
B
Bowen Bao
Q
Qiuyan Yao
J
Jinhua Hu
J
Jijun Zhao
H
Hui Yang
DOI:10.1109/JLT.2025.3595151delete
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Abstract

Abstract

En 中文
Space division multiplexing elastic optical networks (SDM-EONs) is a promising solution to enhance the transmission capacity of optical networks. However, physical layer impairments (PLIs) degrade the service's quality of transmission (QoT). Additionally, service-differentiated spectrum demand leads to spectrum fragmentation, which is further aggravated by strict PLI constraints. Therefore, we propose a routing, core and spectrum allocation algorithm based on dynamic quantitative impairments for low fragmentation (QISEN-LowSF) in SDM-EONs. This algorithm quantitatively analysis multiple impairments and designs restrictive condition to weaken the fragmentation. Specifically, we design a path selection mechanism that takes transmission distance and integration degree of path resources as the cost metrics. Then, we abstract multiple impairment effects in core, and design a core selection mechanism at the cost of impairment estimation and resource integration of each core. When spectrum is allocated to the service, we design a reduced fragmentation spectrum allocation strategy based on the combination of quantified impairment with low-fragmentation. We also optimize the service impairment estimation model in the QoT calculation phase. The results show that QISEN-LowSF performs better than the comparison algorithms under different traffic loads. From the above, the QISEN-LowSF algorithm has superior dynamic flexibility and can reduce blocking probability and the resource fragmentation. Further, it can effectively handle various traffic loads.
Keywords:
Elastic optical networking with space division multiplexing
routing
core
spectrum allocation
physical layer impairment
spectrum fragmentation
quality of the transmission

Journal

Journal of Lightwave Technology cover
Journal of Lightwave Technology
IF:
4.8
Papers:
1.7W
Citations:
3.8W

Organization

B
Beijing University of Posts and Telecommunications
Scholars:
2.6K
Papers: 1.2K
Citations: 4.2K
C
changsha university of science and technology
Scholars:
3.0K
Papers: 1.1K
Citations: 0
H
Hebei University of Engineering
Scholars:
3.3K
Papers: 2.1K
Citations: 2.7K
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