Spatial division multiplexing enabled elastic optical networks(SDM-EONs) are the potential implementation form of future optical transport networks, because it can curve the physical limitation of achievable transmiss...Spatial division multiplexing enabled elastic optical networks(SDM-EONs) are the potential implementation form of future optical transport networks, because it can curve the physical limitation of achievable transmission capacity in single-mode fiber and single-core fiber. However, spectrum fragmentation issue becomes more serious in SDM-EONs compared with simple elastic optical networks(EONs) with single mode fiber or single core fiber. In this paper, multicore virtual concatenation(MCVC) scheme is first proposed considering inter-core crosstalk to solve the spectrum fragmentation issue in SDM-EONs. Simulation results show that the proposed MCVC scheme can achieve better performance compared with the baseline scheme, i.e., single-core virtual concatenation(SCVC) scheme, in terms of blocking probability and spectrum utilization.展开更多
飞速增长的光通信容量需求推动着光纤技术的发展,基于空分复用技术的多芯光纤作为突破传统单模光纤容量限制的方法引起了广泛的关注.本文将纤芯异质结构与低折射率沟槽结合,设计了1种具有低串扰的十九芯单模光纤结构,该结构由环绕沟槽的...飞速增长的光通信容量需求推动着光纤技术的发展,基于空分复用技术的多芯光纤作为突破传统单模光纤容量限制的方法引起了广泛的关注.本文将纤芯异质结构与低折射率沟槽结合,设计了1种具有低串扰的十九芯单模光纤结构,该结构由环绕沟槽的3种不同参数的纤芯按正六边形排布构成,在C+L波段能实现稳定单模传输.研究结果表明:在波长为1.55μm时,通过在沟槽中进行掺氟处理,可以使光纤的芯间串扰降低至–39.52 d B/100 km.此外在弯曲半径为100 mm时,弯曲损耗为–7.7×10^(–5) d B/m且色散低于24 ps/(nm·km).纤芯中基模的有效模场面积约为80μm2,有利于降低非线性效应.与传统单模光纤及单沟槽同质结构光纤相比,该结构具有更低的串扰、更好的抗弯曲性能和更大的模场面积.本文设计的光纤适用于空分复用系统中远距离大容量的传输.展开更多
基金supported in part by NSFC project (61571058, 61601052)
文摘Spatial division multiplexing enabled elastic optical networks(SDM-EONs) are the potential implementation form of future optical transport networks, because it can curve the physical limitation of achievable transmission capacity in single-mode fiber and single-core fiber. However, spectrum fragmentation issue becomes more serious in SDM-EONs compared with simple elastic optical networks(EONs) with single mode fiber or single core fiber. In this paper, multicore virtual concatenation(MCVC) scheme is first proposed considering inter-core crosstalk to solve the spectrum fragmentation issue in SDM-EONs. Simulation results show that the proposed MCVC scheme can achieve better performance compared with the baseline scheme, i.e., single-core virtual concatenation(SCVC) scheme, in terms of blocking probability and spectrum utilization.
文摘飞速增长的光通信容量需求推动着光纤技术的发展,基于空分复用技术的多芯光纤作为突破传统单模光纤容量限制的方法引起了广泛的关注.本文将纤芯异质结构与低折射率沟槽结合,设计了1种具有低串扰的十九芯单模光纤结构,该结构由环绕沟槽的3种不同参数的纤芯按正六边形排布构成,在C+L波段能实现稳定单模传输.研究结果表明:在波长为1.55μm时,通过在沟槽中进行掺氟处理,可以使光纤的芯间串扰降低至–39.52 d B/100 km.此外在弯曲半径为100 mm时,弯曲损耗为–7.7×10^(–5) d B/m且色散低于24 ps/(nm·km).纤芯中基模的有效模场面积约为80μm2,有利于降低非线性效应.与传统单模光纤及单沟槽同质结构光纤相比,该结构具有更低的串扰、更好的抗弯曲性能和更大的模场面积.本文设计的光纤适用于空分复用系统中远距离大容量的传输.