Mobile optical communication using a fiber-optic drone

Fiber-optic drones use physical fiber-optic tethers for data communication, reducing reliance on wireless radio links. Here, drones combine fiber-based flight-control and uplink paths and visible light downlink to achieve flight control and air-to-ground mobile optical communication at the same time. Optical path alignment is dynamically maintained by integrating with three-axis gimbal modules. Real-time data transmission verifies the end-to-end relay path. An uncoded bit error rate (BER) on the order of 10 −4 is obtained at a received optical power of −30 dBm. The results provide a compact mobile optical relay architecture for radio-frequency (RF)-constrained environments.

Authors

Publication Details

Journal
Optics Express
Published
2026-10-06
DOI
https://doi.org/10.1364/oe.612858
Primary Topic
Optical Wireless Communication Technologies
Type
article
Field-Weighted Citation Impact
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Mobile optical communication using a fiber-optic drone

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Mobile optical communication using a fiber-optic drone

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article en

Abstract

Fiber-optic drones use physical fiber-optic tethers for data communication, reducing reliance on wireless radio links. Here, drones combine fiber-based flight-control and uplink paths and visible light downlink to achieve flight control and air-to-ground mobile optical communication at the same time. Optical path alignment is dynamically maintained by integrating with three-axis gimbal modules. Real-time data transmission verifies the end-to-end relay path. An uncoded bit error rate (BER) on the order of 10 −4 is obtained at a received optical power of −30 dBm. The results provide a compact mobile optical relay architecture for radio-frequency (RF)-constrained environments.

Optics ExpressVol. 34(21)
Openalex Percentile: Top 22%
Optical Wireless Communication Technologies
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