The company provides AI‑driven cellular positioning and mission‑planning solutions for UAVs, enabling reliable navigation even in GPS‑denied or jammed environments. Its platform offers real‑time fallback positioning, AI‑optimized route planning, and RF coverage analysis using a proprietary ray‑tracing engine to model cellular signal quality at flight altitudes.
Funding
Funding not disclosed
Founders
Product
Problem
UAV operators often lose reliable navigation when GPS signals are jammed, spoofed, or unavailable, such as indoors, in urban canyons, or during electronic warfare. This limits mission effectiveness and increases safety risks in GPS‑denied environments.
Solution
Atsmus delivers an AI‑driven platform that provides real‑time cellular fallback positioning for UAVs, allowing continuous navigation using existing mobile network signals. The system incorporates a proprietary ray‑tracing engine to model cellular signal quality at flight altitudes, enabling precise RF coverage analysis. AI‑enhanced mission planning optimizes flight routes based on predicted cellular availability, improving efficiency and reliability. The solution integrates with existing UAV control stacks, offering seamless transition between GNSS and cellular positioning without additional hardware. By leveraging ubiquitous cellular infrastructure, Atsmus enables UAV operations indoors, across large distances, and in contested electromagnetic environments.
Target Audience
Primary customers are defense and security agencies, commercial drone service providers, and enterprises that require reliable UAV navigation in GPS‑challenged or indoor settings.
Features
- Real‑time fallback positioning that switches to cellular signals when GNSS is compromised
- AI‑optimized mission planning that selects routes with the strongest predicted cellular coverage
- Proprietary ray‑tracing engine for high‑precision RF modeling of network quality at various altitudes
- RF coverage analysis tool to assess cellular signal availability before and during missions
- Compatibility layer that integrates with standard UAV autopilot and navigation systems
- Support for operation in GPS‑denied, jammed, or indoor environments using any existing cellular network