A Historical Twist on Long-Range Wireless: Building a 103 km Multi-Hop Network Replicating Claude Chappe's Telegraph

Where it appeared

Published inSensors
PublisherMDPI AG
Volume22
Issue19
Pages7586

Identifiers

DOI10.3390/s22197586

Abstract

In 1794, French Engineer Claude Chappe coordinated the deployment of a network of dozens of optical semaphores. These formed “strings” that were hundreds of kilometers long, allowing for nationwide telegraphy. The Chappe telegraph inspired future developments of long-range telecommunications using electrical telegraphs and, later, digital telecommunication. Long-range wireless networks are used today for the Internet of Things (IoT), including industrial, agricultural, and urban applications. The long-range radio technology used today offers approximately 10 km of range. Long-range IoT solutions use “star” topology: all devices need to be within range of a gateway device. This limits the area covered by one such network to roughly a disk of a 10 km radius. In this article, we demonstrate a 103 km low-power wireless multi-hop network by combining long-range IoT radio technology with Claude Chappe’s vision. We placed 11 battery-powered devices at the former locations of the Chappe telegraph towers, hanging under helium balloons. We ran a proprietary protocol stack on these devices so they formed a 10-hop multi-hop network: devices forwarded the frames from the “previous” device in the chain. This is, to our knowledge, the longest low power multi-hop wireless network built to date, demonstrating the potential of combining long-range radio technology with multi-hop technology.

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How it got here

How it got hereagent via crossref
Added2026-08-25 00:00 UTC
Approved bya person 2026-08-25 15:54 UTC

Cite it as

@article{rady2022historical,
  title        = {A Historical Twist on Long-Range Wireless: Building a 103 km Multi-Hop Network Replicating Claude Chappe's Telegraph},
  author       = {Mina Rady and Jonathan Muñoz and Razanne Abu-Aisheh and Mališa Vučinić and José Astorga Tobar and Alfonso Cortes and Quentin Lampin and Dominique Barthel and Thomas Watteyne},
  year         = {2022},
  journal      = {Sensors},
  volume       = {22},
  number       = {19},
  pages        = {7586},
  publisher    = {MDPI AG},
  doi          = {10.3390/s22197586},
}

This record lives at https://refs.drheap.org/rady2022historical/ and will keep doing so.