Private Network Check Readiness - TeckNexus Solutions

Telstra and OneWeb Prepare for Massive LEO Network Rollout to Boost Australia’s Remote Mobile Connectivity

Telstra and OneWeb are gearing up for rollout of the OneWeb's low Earth Orbit (LEO) backhaul to strengthen mobile connectivity across Australia. The strategic alliance represents one of the world's most extensive LEO deployments, aiming to boost real-time applications and expand network reach in remote areas.
Telstra and OneWeb Prepare for Massive LEO Network Rollout to Boost Australia's Remote Mobile Connectivity
Image Credit; OneWeb and Telstra

Telstra and OneWeb are paving the way for a new era in telecommunications, with plans for a major rollout of OneWeb’s low Earth Orbit (LEO) backhaul for a commercial mobile network. The move comes after successful trials in Australia, where the two companies have reached an agreement to switch hundreds of existing remote mobile base stations, presently using satellite backhaul, to OneWeb’s cutting-edge LEO solution, starting later this year. Telstra will also integrate OneWeb’s LEO services into future sites where satellite backhaul is either the preferred or the only practical option.


This ambitious collaboration is intended to channel up to 25 Gbit/s of LEO capacity to Telstra’s most remote mobile customers across Australia. It will not only improve the user experience with real-time applications such as video and voice calls but also pave the way for the expansion of mobile coverage to new remote site deployments. The partnership represents a significant leap in leveraging space technology to address terrestrial communication challenges.

Nikos Katinakis, Group Executive of Global Networks and Technology at Telstra, welcomed the agreement as the beginning of a fruitful, long-term partnership with OneWeb. He remarked, “This collaboration enables us to diversify our services for consumers, small businesses, and enterprise customers in rural and regional Australia, particularly those that demand added redundancy during a power or transmission incident. Our primary focus is to leverage the service as a backhaul medium to interconnect remote mobile base stations. In the long run, this partnership also presents us with opportunities to deliver voice and fixed broadband services to regional Australia.”

The alliance with OneWeb promises to augment Telstra’s regional coverage and aligns with the T25 commitment, which aims to deliver an additional 100,000 square kilometres of mobile coverage by the end of FY25. Telstra is also planning to extend the testing program for other use cases, including network backhaul resilience, such as a backup to fixed backhaul for selected critical sites. Furthermore, the partnership opens up possibilities for emerging use cases for business, enterprise, and government customers, including IoT and mobile connectivity for the emergency services agencies, mining, oil and gas sector.

David Thorn, Vice President, APAC at OneWeb, hailed the partnership as a major step forward. He stated, “For the first time in Australia, we’re partnering with a major player like Telstra to deliver OneWeb’s service across an entire continent. This is going to be greatly beneficial for remote users, including consumers, enterprises, and government agencies.”

OneWeb, with its current constellation of more than 630 satellites in orbit, and an aim to have global coverage by the end of the year, anticipates the launch of its services in Australia by mid-year. A worldwide service rollout is also projected to be in place by early 2024.

This partnership is a key element in Telstra’s T25 ambition to solidify and expand its network leadership position and to widen mobile coverage across the country. It also underlines the growing significance of LEO satellite networks in bridging the connectivity gap, particularly in remote and hard-to-reach locations.


Recent Content

This article breaks down the core distinctions between Quasi-Earth fixed beams and Earth-moving beams in LEO/MEO satellite networks. It explores their application in both transparent and regenerative NTN architectures, the dynamic association of beams to ground cells, TAC list management, and the implications for UE mobility and network signaling.
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 (6.425–7.125 GHz) for mobile use, citing the spectrum’s critical role in future 6G deployment. With the U.S. and China already advancing in this area, operators warn that delays could jeopardize Europe’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.
The telecom sector is evolving from 5G to 6G, emphasizing AI-driven solutions, software-centric strategies, and open-source collaboration. This transition aims to enhance network management and user experiences with technologies like AR, VR, and more efficient data handling.

Currently, no free downloads are available for related categories. Search similar content to download:

  • Reset

It seems we can't find what you're looking for.

Download Magazine

With Subscription

Subscribe To Our Newsletter

Private Network Awards 2025 - TeckNexus
Scroll to Top

Private Network Awards

Recognizing excellence in 5G, LTE, CBRS, and connected industries. Nominate your project and gain industry-wide recognition.
Early Bird Deadline: Sept 5, 2025 | Final Deadline: Sept 30, 2025