Orange Belgium and KPN collaborate to digitalize Westerschelde waterway with 5G

Orange Belgium and KPN will investigate how 5G technology can accelerate the further digitalization of one of Europe's most important waterways. The aim is to define a low-altitude cross-border digital corridor for mobility applications and aviation that will make key nodes in the global supply chain, namely ports and hinterland waterways, more efficient, secure and sustainable. The high speed and ultra short response times (low latency) of the 5G networks will ensure secure and highly reliable connectivity.
Orange Belgium and KPN investigate how Westerschelde can become the world's smartest waterway with 5G
Orange Belgium and KPN investigate how Westerschelde can become the world's smartest waterway with 5G

Orange Belgium and KPN will investigate how 5G technology can accelerate the further digitalization of one of Europe’s most important waterways.ย Today it was announced that the study of the waterway corridor of Belgium and the Netherlands is one of the projects that is eligible for subsidy from the European Commission. In the coming months, theย โ€œ5G Estuaryโ€ย should clarify what is needed to make the Westerschelde the most smart, digitized waterway in the world.


The Westerschelde is of great importance to the economies of Belgium and the Netherlands and is one of the busiest waterways in the world with shipping traffic to the seaports of Antwerp, Bruges, Ghent, Terneuzen and Vlissingen, accounting for more than 150,000 ships per year. In this border region, public and private organizations from both the Netherlands and Belgium frequently interact. Orange Belgium and KPN, together with Port of Antwerp – Bruges and North Sea Ports, will therefore investigate how 5G technology can be deployed on the water, along the banks and in the ports and terminals on both sides of the border. So that it becomes clear what is needed to make the Westerschelde the world’s smartest, digitized waterway.

The study by Orange Belgium and KPN aims to define a low-altitude cross-border digital corridor for mobility applications and aviation that will make key nodes in the global supply chain, namely ports and hinterland waterways, more efficient, secure and sustainable. The high speed and ultra short response times (low latency) of the 5G networks will ensure secure and highly reliable connectivity.

Think, for example, of real-time data exchange to and from vehicles and vessels, ports, and the remote control and support of trucks and boats, for example. But the deployment of autonomous robots, augmented reality, sensors and drone inspections are also among the possibilities. These applications will not only make the logistics chain more efficient, they will also contribute to better security of critical infrastructure and the environment.

With the support of Connecting Europe Facility
The research of Orange Belgium and KPN is supported by the Port of Antwerp-Bruges, North Sea Port, Seafar, Agency for Maritime Services and Coast, De Vlaamse Waterweg, the FOD Economie, Ministry EZK, Ministry I&W, Province of Zeeland and carried out with subsidy from the European Commission under the banner of Connecting Europe Facility (CEF).

The research will take over six months and the results are expected to be published in mid-2023. Parties with interesting visions on digitalization on and around waterways or with applications depending on the availability of high-quality connectivity on water and/or low aviation are invited to contact Michaรซl Peeters, Director Innovation and Business Development of Orange Belgium.


Recent Content

Indoor 5G enables high-speed, low-latency connectivity in enclosed environments like offices, hospitals, and airports, supporting mission-critical applications and smart building operations. The market is driven by technological advancements in small cells, distributed antenna systems, and a mix of mmWave and Sub-6 GHz bands. Asia-Pacific leads in adoption due to smart city initiatives and government support. Picocells and antennas are key components, with growing demand in emerging economies fueled by subsidies and infrastructure upgrades. Recent developments include partnerships and acquisitions aimed at strengthening indoor 5G capabilities.
Twelve major European telecom providers, including Vodafone and Deutsche Telekom, have jointly urged the EU to allocate the full upper 6GHz band (6.425โ€“7.125 GHz) for mobile use, citing the spectrumโ€™s critical role in future 6G deployment. With the U.S. and China already advancing in this area, operators warn that delays could jeopardize Europeโ€™s digital leadership and hinder next-generation connectivity infrastructure.
The telecom industry in 2025 is undergoing a major transformation, driven by artificial intelligence (AI), cloud growth, next-gen cellular networks, and national data sovereignty. AI is reshaping cellular infrastructure, enhancing spectrum efficiency through innovations like ELAA (Extremely Large Aperture Arrays), and enabling smarter, adaptive networks.
Vodafone is expanding its role in the UK smart metering upgrade by providing fixed-line connectivity between energy suppliers and the Data Service Platform (DSP). This move complements its existing mobile network role and positions Vodafone as a critical telecom partner in the UK’s digital energy transition, helping to advance national net-zero and smart grid goals.
Connecting the unconnected requires more than just broadband buildout. National digital inclusion strategies focus on affordability, digital skills, devices, and sustainable infrastructure to empower all communities. Learn how federal programs, state initiatives, and public-private partnerships are reshaping broadband access across America.
Whitepaper
Telecom networks are facing unprecedented complexity with 5G, IoT, and cloud services. Traditional service assurance methods are becoming obsolete, making AI-driven, real-time analytics essential for competitive advantage. This independent industry whitepaper explores how DPUs, GPUs, and Generative AI (GenAI) are enabling predictive automation, reducing operational costs, and improving service quality....
Whitepaper
Explore the collaboration between Purdue Research Foundation, Purdue University, Ericsson, and Saab at the Aviation Innovation Hub. Discover how private 5G networks, real-time analytics, and sustainable innovations are shaping the "Airport of the Future" for a smarter, safer, and greener aviation industry....
Article & Insights
This article explores the deployment of 5G NR Transparent Non-Terrestrial Networks (NTNs), detailing the architecture's advantages and challenges. It highlights how this "bent-pipe" NTN approach integrates ground-based gNodeB components with NGSO satellite constellations to expand global connectivity. Key challenges like moving beam management, interference mitigation, and latency are discussed, underscoring...

Download Magazine

With Subscription

Subscribe To Our Newsletter

Scroll to Top