English

Experimental End-to-End Optimization of Directly Modulated Laser-based IM/DD Transmission

Signal Processing 2025-12-29 v2 Machine Learning

Abstract

Directly modulated lasers (DMLs) are an attractive technology for short-reach intensity modulation and direct detection communication systems. However, their complex nonlinear dynamics make the modeling and optimization of DML-based systems challenging. In this paper, we study the end-to-end optimization of DML-based systems based on a data-driven surrogate model trained on experimental data. The end-to-end optimization includes the pulse shaping and equalizer filters, the bias current and the modulation radio-frequency (RF) power applied to the laser. The performance of the end-to-end optimization scheme is tested on the experimental setup and compared to 4 different benchmark schemes based on linear and nonlinear receiver-side equalization. The results show that the proposed end-to-end scheme is able to deliver better performance throughout the studied symbol rates and transmission distances while employing lower modulation RF power, fewer filter taps and utilizing a smaller signal bandwidth.

Keywords

Cite

@article{arxiv.2508.19910,
  title  = {Experimental End-to-End Optimization of Directly Modulated Laser-based IM/DD Transmission},
  author = {Sergio Hernandez and Christophe Peucheret and Francesco Da Ros and Darko Zibar},
  journal= {arXiv preprint arXiv:2508.19910},
  year   = {2025}
}

Comments

10 pages, 10 figures, published in journal of lightwave technology