Optical-Wireless x-Hual Networking
Optical-Wireless x-Hual Networking
An optical-wireless x-haul experiment has been developed to demonstrate the C-RAN architecture and its integration with the optical x-haul network and SDN control. In particular, the wideband FD radio serves as an FD base station (BS) located at the large node. The FD BS sends baseband IQ data through the core optical switching at the Columbia data center to the colocation side at 32 Avenue of the Americas. It is then sent back to the data center at Columbia for digital signal processing using NI LabVIEW. Simultaneously, a video multicast application operates on the x-haul network on a different optical wavelength. The access point (AP), which needs to dynamically adapt to the channel conditions of several users, receives video streams from two servers through on-demand optical switching managed by a Ryu-based SDN controller. One is received through the short green route (<1 mile distance), and other through the long red route (~14 miles distance). The experiment evaluates the ability of the multicast application to switch between a local and remote cloud servers (via optical support) while responding to the users’ channel states.
[1] H. Nishizawa, T. Mano, T. Ferreira de Lima, Y.-K. Huang, Z. Wang, W. Ishida, M. Kawashima, E. Ip, A. D’Amico, S. Okamoto, T. Inoue, K. Anazawa, V. Curri, G. Zussman, D. Kilper, T. Chen, T. Wang, K. Asahi, and K. Takasugi, “Fast WDM provisioning with minimal probing: the first field experiments for DC exchanges,” Journal of Optical Communications and Networking (to appear), 2024. [download]
[2] Z. Wang, Y.-K. Huang, E. Ip, Z. Qi, G. Zussman, K. Asahi, H. Kageshima, Y. Aono, and T. Chen, “Field trial of coexistence and simultaneous switching of real-time fiber sensing and coherent 400 GbE in a dense urban environment,” IEEE/OPTICA Journal of Ligthwave Technology (to appear), 2024. [download] Invited Paper to the Special Issue on Top-Scored Papers from IEEE/Optica OFC’23
[4] T. Mano, T. Ferreira de Lima, Y.-K. Huang, Z. Wang, W. Ishida, E. Ip, A. D’Amico, S. Okamoto, T. Inoue, H. Nishizawa, V. Curri, G. Zussman, D. Kilper, T. Chen, T. Wang, K. Asahi, and K. Takasugi, “First Field Demonstration of Automatic WDM Optical Path Provisioning over Alien Access Links for Data Center Exchange,” in Proc. European Conference on Optical Communication (ECOC’23), Oct. 2023. [download] one of Conf. Best Papers
[5] A. Raj, Z. Wang, F. Slyne, T. Chen, D. Kilper, and M. Ruffini, “Self-Normalizing Neural Network, Enabling One Shot Transfer Learning for Modeling EDFA Wavelength Dependent Gain,” in Proc. European Conference on Optical Communication (ECOC’23), Oct. 2023. [download]
[6] R. Raj, S. Xie, Z. Wang, T. Chen, and D. Kilper, “Machine Learning-based Raman Tilt Prediction in a ROADM Transmission System,” in Proc. European Conference on Optical Communication (ECOC’23), Oct. 2023. [download]
[7] Z. Wang, D. Kilper, and T. Chen, “An Open EDFA Gain Spectrum Dataset and Its Applications in Data-driven EDFA Gain Modeling,” IEEE/Optica Journal of Optical Communications and Networking (JOCN), Vol. 15, No. 9, pp. 588-599, Sept. 2023. [dataset] [download]
[15] K. Guan, J. E. Simsarian, F. Boitier, D. Kilper, J. Pesic, and M. Sherman, “Efficient Classification of Polarization Events Based on Field Measurements”, Proc. OSA OFC’20, Th3D.7, Mar. 2020 [download]
[16] C. Gutterman, A. Minakhmetov, J. Yu, M. Sherman, T. Chen, S. Zhu, I. Seskar, D. Raychaudhuri, D. Kilper, and G. Zussman, “Programmable optical x-haul network in the COSMOS testbed,” in Proc. IEEE ICNP’19 Workshop Midscale Education and Research Infrastructure and Tools (MERIT), 2019. [download]
[17] J. Yu, T. Chen, C. Gutterman, S. Zhu, G. Zussman, I. Seskar, and D. Kilper, “COSMOS: Optical architecture and prototyping,” in Proc. OSA OFC’19, M3G.3 (invited), 2019. [download] [slides]
