Hybrid Routing, Modulation, Spectrum and Core Allocation Based on Mapping Scheme

Author:

Rodrigues EdsonORCID,Cerqueira EduardoORCID,Rosário DenisORCID,Oliveira HelderORCID

Abstract

With the persistently growing popularity of internet traffic, telecom operators are forced to provide high-capacity, cost-efficient, and performance-adaptive connectivity solutions to fulfill the requirements and increase their returns. However, optical networks that make up the core of the Internet gradually reached physical transmission limits. In an attempt to provide new solutions emerged, the Space-Division Multiplexing Elastic Optical Network emerged as one of the best ways to deal with the network depletion. However, it is necessary to establish lightpaths using routing, modulation, spectrum, and core allocation (RMSCA) algorithms to establish connections in these networks. This article proposes a crosstalk-aware RMSCA algorithm that uses a multi-path and mapping scheme for improving resource allocation. The results show that the proposed algorithm decreases the blocking ratio by up to four orders of magnitude compared with other RMSCA algorithms in the literature.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference28 articles.

1. Cisco Annual Internet Report (2018–2023) White Paperhttps://www.cisco.com/c/en/us/solutions/collateral/executive-perspectives/annual-internet-report/white-paper-c11-741490.html

2. Quantum Limits in Optical Communications

3. Protection in elastic optical networks using Failure-Independent Path Protecting p-cycles

4. A survey on Crosstalk and Routing, Modulation Selection, Core and Spectrum Allocation in Elastic Optical Networks;Brasileiro;arXiv,2019

5. Elastic optical networking: a new dawn for the optical layer?

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