光通信技术, 2023, 47 (5): 0029, 网络出版: 2024-02-02  

多芯光纤中的自适应阈值和频谱优先算法

Adaptive threshold and spectrum first algorithm in multi-core fiber
作者单位
南京邮电大学通信与信息工程学院袁南京210003
摘要
为了有效解决纤芯中的串扰问题并降低网络阻塞率,提出了一种自适应阈值和频谱优先(AT-SF)算法,采用纤芯分组的方式使每组中的纤芯不相邻,将典型的7 芯光纤分成3 组,第三组纤芯的优先级在业务到达过程中是可变的;同时,AT-SF 算法引入了频隙(FS)阈值参数,将大于FS 阈值的业务分配在第一、第二或者第三组纤芯上,小于等于FS 阈值的业务只分配在第三组纤芯上。分别在NSFNET、USNET 网络中进行了仿真实验,对比了首次匹配(FF)、三维资源分配(3D-RA)、路径优先(aW-PF)、共轭梯度频谱优先(CG-SF)算法性能。仿真结果表明,与其它算法相比,AT-SF 算法在网络处于高负载状态时能获得更好的阻塞率和串扰性能。
Abstract
In order to solve the crosstalk problem and reduce the blocking rate, an adaptive threshold and spectrum first 渊AT-SF冤algorithm is proposed. The fiber cores in each group are grouped so that they are not adjacent, and a typical 7-core fiber is dividedinto three groups. The priority level of the third group of fiber cores is variable during the service arrival process.. At the sametime, the AT-SF algorithm introduces the frequency slot渊FS冤threshold parameter, and allocates the services greater than the FSthreshold to the first, second or third group of fibers, while the services less than or equal to the FS threshold are only allocated tothe third group of fibers. The simulation experiments are carried out in NSFNET and USNET networks, and the performance offirst match渊FF冤, 3D resource allocation渊3D-RA冤, path first渊aW-PF冤and conjugate gradient spectrum first渊CG-SF冤algorithmsare compared. The simulation results show that the AT-SF algorithm can obtain better blocking rate and crosstalk performancethan other algorithms when the network is under high load.
参考文献

[1] MIROSAW K, PIOTR L, KRZYSZTOF W. Survey of resource allocationschemes and algorithms in spectrally-spatially flexible opticalnetworking[J]. Optical Switching and Networking, 2018, 27: 58-78.

[2] 刘焕淋袁杜理想袁陈勇袁等. 串扰感知的空分弹性光网络频谱转换器稀疏配置和资源分配方法[J]. 电子与信息学报,2020,42(7);1718-1725.

[3] 任丹萍袁张黎袁胡劲华. 空分复用弹性光网络中串扰感知的虚拟网络映射研究[J]. 光学学报, 2023,43(5);39-49.

[4] XIONG Y, YE Y, ZHANG H, et al. Deep learning and hierarchicalgraph-assisted crosstalk-aware fragmentation avoidance strategy in spacedivision multiplexing elastic optical networks [J]. Optics Express, 2020, 28(3): 2758-2777.

[5] ZHEN W, HU J, CHEN Q, et al. Virtual optical network mappingapproaches with inter-core crosstalk in space division multiplexing elasticoptical data center networks [C]//2021 19th International Conference onOptical Communications and Networks (ICOCN). Qufu, China. Qufu: IEEE,2021: 1-4.

[6] 梁梓豪袁陈舜儿袁刘伟平. 多芯光纤性能的研究现状与发展分析[J].光通信技术,2017,41(1);49-52.

[7] 张佳唯袁钱凤臣袁杨俊强袁等. 弹性光网络中路由与频谱分配算法综述[J]. 系统工程与电子技术,2022,44(6);2001-2010.

[8] ERWAN P, SONG M, KARAKI J, et al. Multi-band OFDM transmissionat 100 Gbps with sub-band optical switching [J]. Journal of LightwaveTechnology, 2014, 32(12): 2202-2219.

[9] ARPANAEI F, ARDALANI N, BEYRANVAND H, et al. Three-dimen-sional resource allocation in space division multiplexing elastic opticalnetworks[J]. Journal of Optical Communications and Networking, 2018, 10(12): 959-974.

[10] ZHANG S, YEUNG K L. Dynamic service provisioning in space-divisionmultiplexing elastic optical networks[J]. Journal of Optical Communicationsand Networking, 2020,12(11): 335-343.

[11] CHANG J H, CHOI H G, CHUNG Y C. Achievable capacity improvementby using multi-level modulation format in trench-assisted multi-corefiber system[J]. Optics Express, 2013, 21(12}: 14262-14271.

[12] FUJII S, HIROTA Y, TODE H, et al. On-demand spectrum and coreallocation for reducing crosstalk in multicore fibers in elastic opticalnetworks [J]. Journal of Optical Communications and Networking, 2014, 6(12): 1059-1071.

[13] 蔡一峰袁蓝求旺袁陈尚君袁等. 一种串扰感知的空分复用弹性光网络频谱分配算法[J]. 光通信技术袁2022,46(5):20-24.

[14] CHRISTODOULOPOULOS K, TOMKOS I, VARIGOS E A. Routingand spectrum allocation in OFDM-based optical networks with elasticbandwidth allocation [C]//IEEE. Proceedings of 2010 IE

江亮, 葛瑞林, 陈铭毓, 沈建华. 多芯光纤中的自适应阈值和频谱优先算法[J]. 光通信技术, 2023, 47(5): 0029. JIANG Liang, GE Ruilin, CHEN Mingyu, SHEN Jianhua. Adaptive threshold and spectrum first algorithm in multi-core fiber[J]. Optical Communication Technology, 2023, 47(5): 0029.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!