AI-Compacted Data Networks

Atombeam Shrinks LiDAR Data for Cellular Transmission

Atombeam is helping connected devices transmit larger volumes of information through AI-compacted data networks that reduce the amount of data traveling across existing infrastructure. Its Neurpac software uses machine learning to identify patterns and encode data into smaller transmissions before decoding it at the destination. In SIMSY testing, the technology compacted LiDAR data by 75%, addressing cellular uplink constraints that previously made moving these large data sets difficult in real time. The software can also process sensor, SCADA, database and system event data.

The approach could help enterprises expand data-intensive applications without immediately upgrading physical network infrastructure. SIMSY plans to offer Neurpac across its secure cellular network, supporting use cases including autonomous vehicles, drones, robotics and industrial automation. By reducing bandwidth requirements through software, organizations could increase transfer speeds, limit network congestion and extend the usefulness of existing cellular, wired and satellite infrastructure.

Image Credit: Atombeam

AI-compacted Transmission
Machine learning-based encoding creates room for high-volume sensor streams to move across constrained networks with less dependence on costly infrastructure expansion.
Real-time Lidar Streaming
Compressed LiDAR data enables autonomous systems to share richer environmental information over cellular links where bandwidth limits previously restricted live operation.
Software-defined Bandwidth
Network performance gains shift from hardware upgrades to intelligent data reduction, opening new models for scaling connected devices across legacy infrastructure.

Where This Applies

Autonomous Vehicles
Reduced uplink demands make continuous sensor communication more practical for vehicles that require real-time perception data across cellular networks.
Industrial Automation
Factories and remote facilities gain broader capacity to transmit SCADA, robotics and event data without replacing existing connectivity systems.
Telecommunications
Cellular and satellite providers can extend network value by pairing secure connectivity with AI-driven compaction for enterprise data workloads.
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