Myriota Joins ETSI for NTN Standards

The Rise of Myriota: How Satellite IoT is Shaping the Future of 6G and Global Connectivity
The telecommunications landscape is undergoing a seismic shift as the world inches closer to the 6G era. At the heart of this transformation lies Non-Terrestrial Networks (NTN), a critical enabler for seamless global connectivity. Myriota, an Australian satellite IoT operator, has emerged as a key player in this space, leveraging strategic partnerships and standardization efforts to redefine IoT connectivity. By joining the European Telecommunication Standards Institute (ETSI) and collaborating with industry giants like Viasat and Nordic Semiconductor, Myriota is positioning itself at the forefront of the NTN revolution. This article explores how these moves are accelerating the integration of satellite IoT into mainstream telecommunications, bridging the gap between terrestrial and non-terrestrial networks.

Myriota’s Strategic Move: Joining ETSI for Global Standardization

Standardization is the backbone of technological progress, and Myriota’s recent membership in ETSI underscores its commitment to shaping the future of NTN. ETSI, a powerhouse in telecommunications standards, has been instrumental in addressing the limitations of traditional TCP/IP networks, particularly for IoT and emergency communications. Its Non-IP Networking group has published pivotal reports (ETSI GR NIN 001 and 002) that highlight the need for innovative solutions beyond conventional frameworks.
By aligning with ETSI, Myriota gains a seat at the table where global NTN standards are forged. This is especially significant as the industry gears up for 6G, where NTN will play a central role in delivering ubiquitous connectivity. The ETSI Conference on Non-Terrestrial Networks in April 2024 emphasized this vision, stressing the importance of interoperability and scalability. Myriota’s involvement ensures that satellite IoT solutions are not just an afterthought but a core component of the 6G blueprint.

HyperPulse™ and the Viasat Partnership: Bridging 5G and Satellite IoT

One of Myriota’s most groundbreaking initiatives is the HyperPulse™ service, developed in collaboration with Viasat. This service leverages Viasat’s geostationary L-band network to deliver 3GPP 5G-based Narrowband NTN (NB-NTN) connectivity—a first for the industry. HyperPulse™ is tailored for remote IoT sensing, offering low-latency, reliable communication in areas where terrestrial networks fall short.
What sets HyperPulse™ apart is its dynamic leasing capability, which optimizes bandwidth allocation for IoT devices in real time. This is a game-changer for industries like agriculture, maritime, and environmental monitoring, where real-time data from remote sensors can drive decision-making. For instance, farmers in arid regions can use HyperPulse™-enabled sensors to monitor soil moisture and automate irrigation, reducing water waste. Similarly, shipping companies can track cargo conditions across oceans without relying on spotty cellular coverage.
The partnership with Viasat also signals a broader trend: the convergence of satellite and terrestrial networks. As 5G evolves, the line between these two domains will blur, with NTN acting as a force multiplier for global coverage. Myriota’s HyperPulse™ is a proof of concept that this future is already here.

Nordic Semiconductor Collaboration: Powering the Next Wave of Low-Power IoT

While Viasat brings satellite muscle to the table, Myriota’s partnership with Nordic Semiconductor addresses another critical challenge: power efficiency. Nordic’s expertise in ultra-low-power semiconductor technology dovetails perfectly with Myriota’s satellite IoT solutions, enabling battery-operated sensors to communicate directly with satellites for years without maintenance.
This collaboration is particularly transformative for industrial IoT (IIoT). Imagine oil pipelines in the Arctic or wildfire detection systems in remote forests—applications where replacing batteries is impractical. By combining Nordic’s energy-efficient chips with Myriota’s NTN capabilities, these systems can transmit data reliably while sipping power. The result is a new class of IoT devices that are both sustainable and resilient.
Moreover, this partnership aligns with 5G NTN standards, ensuring compatibility with future networks. As industries from logistics to smart cities adopt IoT at scale, Myriota and Nordic are laying the groundwork for a seamlessly connected ecosystem.

The Road Ahead: NTN as the Bedrock of 6G

The pieces are falling into place for NTN to become a cornerstone of 6G. Myriota’s trifecta—ETSI standardization, the Viasat-powered HyperPulse™, and the Nordic Semiconductor alliance—demonstrates how satellite IoT can complement and enhance terrestrial networks. The implications are profound:
Global Coverage: NTN eliminates dead zones, bringing connectivity to the most remote corners of the planet.
Resilience: Satellite networks are less vulnerable to terrestrial disruptions, making them ideal for disaster response and critical infrastructure.
Innovation: From precision agriculture to autonomous shipping, NTN unlocks use cases that were previously unimaginable.
ETSI’s ongoing work, coupled with Myriota’s partnerships, ensures that these advancements are not siloed but part of a cohesive, standards-driven framework. The April 2024 ETSI conference made it clear: NTN is not just a niche technology but a linchpin of the 6G vision.

Conclusion

Myriota’s journey from an Australian startup to a global NTN leader is a testament to the transformative potential of satellite IoT. By embedding itself in standardization bodies like ETSI and forging alliances with Viasat and Nordic Semiconductor, the company is not just adapting to the future—it’s helping to build it. The HyperPulse™ service and low-power IoT solutions exemplify how NTN can solve real-world challenges, from rural connectivity to sustainable infrastructure. As the world marches toward 6G, Myriota’s innovations remind us that the next era of telecommunications will be defined not by boundaries, but by boundless connectivity.

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