Analyzing Ultra-Low Inter-Core Crosstalk Fibers in Band and Space Division Multiplexing EONs

Fuente: arXiv
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Main Authors: Arpanaei, F., Natalino, C., Zefreh, M. Ranjbar, Yan, S., Rabbani, H., Brandt-Pearce, Maite, Fernandez-Palacios, J. P., Rivas-Moscoso, J. M., de Dios, O. Gonzalez, Hernandez, J. A., Sanchez-Macian, A., Larrabeiti, D., Monti, P.
Format: Preprint
Published: 2024
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author Arpanaei, F.
Natalino, C.
Zefreh, M. Ranjbar
Yan, S.
Rabbani, H.
Brandt-Pearce, Maite
Fernandez-Palacios, J. P.
Rivas-Moscoso, J. M.
de Dios, O. Gonzalez
Hernandez, J. A.
Sanchez-Macian, A.
Larrabeiti, D.
Monti, P.
author_facet Arpanaei, F.
Natalino, C.
Zefreh, M. Ranjbar
Yan, S.
Rabbani, H.
Brandt-Pearce, Maite
Fernandez-Palacios, J. P.
Rivas-Moscoso, J. M.
de Dios, O. Gonzalez
Hernandez, J. A.
Sanchez-Macian, A.
Larrabeiti, D.
Monti, P.
contents In the ultra-low inter-core crosstalk working zone of terrestrial multi-band and multi-core fiber (MCF) elastic optical networks (EONs), the ICXT in all channels of all cores remains below the ICXT threshold of the highest modulation format level (64QAM) for long-haul distances (10000 km). This paper analyzes the performance of this type of MCF in multi-band EONs (MB-EONs). We investigate two band and space division multiplexing (BSDM) scenarios: MCF and a bundle of multi-fiber pairs (BuMFP). Furthermore, the UL-ICXT performance of two MCFs, one with the standard cladding diameter (CD = 125 micrometers) with 4 cores and another with a nonstandard larger CD with 7 cores, is evaluated in the US backbone network. Our findings show that, with careful design of the MCFs physical structure, even with a standard CD, it is possible to achieve UL-ICXT in C, L, and S-band long-haul BSDM EONs. Additionally, the simulation results show that network throughput for BSDM EONs with MCFs in the UL-ICXT regime is up to 12 percent higher than the BuMFP scenario, with capacity increasing linearly with the number of cores.
format Preprint
id arxiv_https___arxiv_org_abs_2411_03772
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Analyzing Ultra-Low Inter-Core Crosstalk Fibers in Band and Space Division Multiplexing EONs
Arpanaei, F.
Natalino, C.
Zefreh, M. Ranjbar
Yan, S.
Rabbani, H.
Brandt-Pearce, Maite
Fernandez-Palacios, J. P.
Rivas-Moscoso, J. M.
de Dios, O. Gonzalez
Hernandez, J. A.
Sanchez-Macian, A.
Larrabeiti, D.
Monti, P.
Systems and Control
In the ultra-low inter-core crosstalk working zone of terrestrial multi-band and multi-core fiber (MCF) elastic optical networks (EONs), the ICXT in all channels of all cores remains below the ICXT threshold of the highest modulation format level (64QAM) for long-haul distances (10000 km). This paper analyzes the performance of this type of MCF in multi-band EONs (MB-EONs). We investigate two band and space division multiplexing (BSDM) scenarios: MCF and a bundle of multi-fiber pairs (BuMFP). Furthermore, the UL-ICXT performance of two MCFs, one with the standard cladding diameter (CD = 125 micrometers) with 4 cores and another with a nonstandard larger CD with 7 cores, is evaluated in the US backbone network. Our findings show that, with careful design of the MCFs physical structure, even with a standard CD, it is possible to achieve UL-ICXT in C, L, and S-band long-haul BSDM EONs. Additionally, the simulation results show that network throughput for BSDM EONs with MCFs in the UL-ICXT regime is up to 12 percent higher than the BuMFP scenario, with capacity increasing linearly with the number of cores.
title Analyzing Ultra-Low Inter-Core Crosstalk Fibers in Band and Space Division Multiplexing EONs
topic Systems and Control
url https://arxiv.org/abs/2411.03772