MARATTO

article · Optics Communications

Dual-function injection-locked DFB LDs in SMF–FSO–5G wireless system

20243 citationsOpen accessDebre Berhan University

Abstract

This paper presents a novel bi-directional single-mode fiber (SMF)-free-space optical (FSO)-fifth-generation (5G) millimeter-wave (MMW)/sub-6 GHz wireless system that utilizes remotely injection-locked distributed feedback (DFB) laser diodes (LDs). These DFB LDs serve dual functions, enabling both the reception of 5G MMW signals and the transmission of 5G sub-6 GHz signals. The system employs phase modulation across both transmission paths, effectively reducing distortion and noise compared to intensity modulation . Experimental results demonstrate the successful transmission of downstream 10-Gbps/24-GHz and 10-Gbps/28-GHz signals, and upstream 2.5-Gbps/3.5-GHz and 2.5-Gbps/4.5-GHz signals using 16-quadrature amplitude modulation orthogonal frequency-division multiplexing. The system exhibits low error vector magnitudes and bit error rates, with clear constellation patterns and eye diagrams observed across the integrated media, comprising 40-km of SMF, 500-m of FSO, and 4-m/10-m of 5G MMW/sub-6 GHz wireless links. These findings confirm the potential of remotely injection-locked DFB LDs as dual-purpose devices for efficient bi-directional 5G communication.

Research topics

  • Advanced Photonic Communication Systems
  • Optical Network Technologies
  • Optical Wireless Communication Technologies

Sustainable Development Goals

Read the original research

This page summarises published work. The authoritative version sits with the publisher.

DOI: 10.1016/j.optcom.2024.131432

Is something wrong with this record? Report it or request removal.

Discussion

Discuss this research

Have you built on this work, tried to replicate it, or seen it applied in practice? Share what you know. Verified researchers and MARATTO™ domain experts can open a discussion, and any member can reply. Contributions are reviewed before they appear.

No discussion yet. Open the first thread.