Demonstration of continuous multiple access with homodyne and image-rejection heterodyne coherent receivers using directly modulated laser transmitters

Author:

Masanas MiquelORCID,Tabares Jeison1,Cano Ivan2ORCID,Prat Josep

Affiliation:

1. Luxquanta Technologies

2. Huawei Technologies

Abstract

This work presents a comprehensive set of experiments for the multipoint-to-point coherent passive optical network (PON), where the wavelength locking between the optical network unit (ONU) and optical line termination lasers is critical, especially if operating in burst mode. Here, we test the performance of continuous multiple access in a splitter-based PON with both an ultra-dense wavelength division multiplexing and RF-subcarrier multiplexing configuration, with simple distributed feedback (DFB) lasers along non-return to zero and pulse amplitude modulation of four levels. Most interestingly, we test a spectrally efficient heterodyne receiver with image-frequency rejection and polarization independence based on the 3×3 optical front-end. Two users at the same intermediate frequency are detected simultaneously avoiding image frequency interference while minimizing complexity, with transmissions of 2.5 Gb/s. We provide comparison with an asynchronous homodyne receiver. The achieved results demonstrate the feasibility of continuous multiple access using thermally controlled ONUs with conventional DFBs as an enhanced alternative to commercial time division multiplexing access.

Funder

HORIZON EUROPE Marie Sklodowska-Curie Actions

Publisher

Optica Publishing Group

Subject

Computer Networks and Communications

Reference12 articles.

1. Requirements for testing and validating the Industrial Internet of Things;Antão,2018

2. Deployment strategies for ultra-reliable and low-latency communication in factory automation;Brahmi,2015

3. Point-to-Multipoint Optical Networks Using Coherent Digital Subcarriers

4. Low-complexity phase-and-polarization-diversity coherent receiver with high spectral efficiency for UDWDM;Tabares,2021

5. Colorless coherent receiver using 3x3 coupler hybrids and single-ended detection

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