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20182022
most citedExperimental Comparison of Cap and Cup Probabilistically Shaped PAM for O-Band IM/DD Transmission System

6 citations · 12 across the 5 of their papers we have counts for

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eess.SP20226 cited

Experimental Comparison of Cap and Cup Probabilistically Shaped PAM for O-Band IM/DD Transmission System

Md Sabbir-Bin Hossain, Georg Boecherer, Talha Rahman +9

For 200Gbit/s net rates, uniform PAM-4, 6 and 8 are experimentally compared against probabilistic shaped PAM-8 cap and cup variants. In back-to-back and 20km measurements, cap shap…

eess.SP2022

Record Capacity-Reach of C band IM/DD Optical Systems over Dispersion-Uncompensated Links

Haide Wang, Ji Zhou, Jinlong Wei +5

We experimentally demonstrate a C band 100Gbit/s intensity modulation and direct detection entropy-loaded multi-rate Nyquist-subcarrier modulation signal over 100km dispersion-unco…

eess.SP20203 cited

Practical Solutions for 400 Gbit/s Data Center Transmission

Annika Dochhan, Nicklas Eiselt, Jinlong Wei +5

We review three solutions for low-cost data center interconnects with a target reach of up to 80 km. Directly detected DMT, PAM-4 and multi-band CAP are promising modulation scheme…

eess.SP2020

Complexity Reduction of Volterra Nonlinear Equalization for Optical Short-Reach IM/DD Systems

Tom Wettlin, Talha Rahman, Jinlong Wei +3

We investigate approaches to reduce the computational complexity of Volterra nonlinear equalizers (VNLEs) for short-reach optical transmission systems using intensity modulation an…

eess.SP20181 cited

Fiber-induced nonlinearity compensation in coherent optical systems by affinity propagation soft-clustering

Elias Giacoumidis, Jinlong Wei, Ivan Aldaya +3

There is a tremendous need to maximize signal capacity without sacrificing energy consumption and complexity in optical fiber communications due to the rise of network traffic dema…

eess.SP2018

Exceeding the Nonlinear Shannon-Limit in Coherent Optical Communications by MIMO Machine Learning

Elias Giacoumidis, Jinlong Wei, Ivan Aldaya +1

The nonlinear Shannon capacity limit has been identified as the fundamental barrier to the maximum rate of transmitted information in optical communications. In long-haul high-band…