Netmore Expands LPWAN Network with Kinéis Satellite Connectivity

Key Takeaways

  • Netmore Group integrates Kinéis satellite connectivity into its LPWAN network, enhancing IoT operations for various sectors.
  • The hybrid network automates failover between terrestrial and satellite links, ensuring consistent data transmission.
  • The global hybrid cellular IoT market is projected to expand from $8.6 billion in 2025 to $89.4 billion by 2034.

Enhanced IoT Connectivity Through Satellite Integration

Netmore Group has successfully integrated Kinéis satellite connectivity into its Low Power Wide Area Network (LPWAN), aiming to bolster hybrid terrestrial and orbital IoT operations. This development enables streamlined management for clients engaged in utilities, water management, infrastructure, and smart city initiatives. Kinéis operates a European constellation of 25 satellites focused on IoT and Automatic Identification Systems (AIS).

Through this collaboration, customers can now manage both satellite and terrestrial communications via Netmore’s ThingPark platform. This integration eliminates the need for separate management systems, extending device communication beyond the limitations of traditional ground-based LoRaWAN networks. Cécile Morel, Commercial Director at Kinéis, emphasized the significance of this partnership, stating that it showcases their capacity to collaborate with major players in massive IoT for prompt deployment solutions. The alliance combines global satellite reach with robust connectivity from Netmore’s LoRaWAN network, ensuring service continuity that standalone technologies cannot guarantee.

Andreas Stenhager, CCO of Netmore, highlighted that the addition of Kinéis’ IoT satellite system enhances their carrier-grade LoRaWAN network, providing businesses with a hybrid connectivity solution necessary for tracking and monitoring applications in remote areas.

Automated Network Management

The hybrid network intelligently switches between terrestrial and satellite communication, automatically engaging satellite connectivity when ground-based signals are lost. This design aims to maintain data continuity without requiring intervention from system operators. Key advantages of this architecture include supporting autonomous monitoring of distant sites, transitioning from reactive maintenance to predictive fault detection, and facilitating early identification of risks like water leaks and fires.

Continuous asset tracking is also a feature, enabling operators to optimize transit routes over regions lacking terrestrial infrastructure. The implementation leverages readily available hybrid hardware, significantly reducing product engineering timelines. Kinéis currently offers a range of validated off-the-shelf devices ready for immediate deployment.

For asset tracking, Track Value and Beepings Beepro devices provide real-time geolocation even outside ground coverage. Water and infrastructure sectors utilize Sentiv hardware to monitor remote meters and facilities, while Dryad Sylvanet devices aid in environmental surveillance and wildfire detection in areas without terrestrial connectivity.

Market Trends and Standardization

The increasing demand for seamless service in remote locations is fueling growth in the hybrid communications market. According to the Hybrid Terrestrial-Satellite Cellular IoT Connectivity Market Research Report, the sector is expected to grow from $8.6 billion in 2025 to a staggering $89.4 billion by 2034.

Both Kinéis and Netmore are active participants in the LoRa Alliance, ensuring that their deployment aligns with the organization’s technical objectives. Their current advancements are built upon standards for Low Earth Orbit (LEO) and Geostationary Orbit (GEO) satellite communications. The companies are updating their systems to comply with the planned Satellite Discovery Enhancements specification, which aims to streamline how commercial off-the-shelf LoRaWAN devices connect to satellite networks. This advancement precedes a European space summit focused on enhancing regional commercial space initiatives.

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