most citedNon-linear Equalization in 112 Gb/s PONs Using Kolmogorov-Arnold Networks

1 citations · 1 across the 4 of their papers we have counts for

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5 papers

eess.SP2025

Novel Phase-Noise-Tolerant Variational-Autoencoder-Based Equalization Suitable for Space-Division-Multiplexed Transmission

Vincent Lauinger, Lennart Schmitz, Patrick Matalla +3

We demonstrate the effectiveness of a novel phase-noise-tolerant, variational-autoencoder-based equalization scheme for space-division-multiplexed (SDM) transmission in an experime…

eess.SP2025

Elastic Buffer Design for Real-Time All-Digital Clock Recovery Enabling Free-Running Receiver Clock with Negative and Positive Clock Frequency Offsets

Patrick Matalla, Joel Dittmer, Md Salek Mahmud +2

We present an elastic buffer design that enables all-digital clock recovery implementation with free-running receiver clock featuring negative and positive clock frequency offsets.…

eess.SP20241 cited

Non-linear Equalization in 112 Gb/s PONs Using Kolmogorov-Arnold Networks

Rodrigo Fischer, Patrick Matalla, Sebastian Randel +1

We investigate Kolmogorov-Arnold networks (KANs) for non-linear equalization of 112 Gb/s PAM4 passive optical networks (PONs). Using pruning and extensive hyperparameter search, we…

eess.SP2024

Recent Advances on Machine Learning-aided DSP for Short-reach and Long-haul Optical Communications

Laurent Schmalen, Vincent Lauinger, Jonas Ney +5

In this paper, we highlight recent advances in the use of machine learning for implementing equalizers for optical communications. We highlight both algorithmic advances as well as…

cs.LG2024

Advanced Equalization in 112 Gb/s Upstream PON Using a Novel Fourier Convolution-based Network

Chen Shao, Elias Giacoumidis, Patrick Matalla +6

We experimentally demonstrate a novel, low-complexity Fourier Convolution-based Network (FConvNet) based equalizer for 112 Gb/s upstream PAM4-PON. At a BER of 0.005, FConvNet enhan…