Key Technology Advantages

Regime-Dependent Resilient Navigation

Delivers useful relative consistency in GNSS-denied environments. Performance is strongly dependent on motion-cue frequency, mounting, and IMU grade. High-cue configurations can achieve low-meter to sub-meter relative consistency; typical handheld use is multi-meter class.

VoxelNAV provides resilient navigation support across mission phases in GNSS-denied environments — from staging areas to the objective and back — with performance dependent on available motion cues and sensor configuration.” [Click on image to view article]

Resilient navigation when external signals cannot be trusted.
indoor positioning system

Infrastructure-Free Operation

Core operation requires only an IMU and processor. Additional sensors (magnetometer, visual velocity, multi-IMU, etc.) are optional but improve performance by helping observe and slow residual software-frame drift.

Robust in Complex Environments

Ideal for tunnels, warehouses, office complexes, and other GNSS-denied areas.

Our Solutions

Flexible software and API offerings for seamless integration.

inertial sensors MEMS technology

Navigation Software Licensing

Flexible licensing models for integrating VoxelNAV into new or existing hardware platforms. Supports MEMS IMUs and other onboard sensors.

inertial sensors MEMS technology

API Access

Robust API for seamless integration with embedded systems, supporting a range of platforms and sensor types.

inertial sensors MEMS technology

Custom Integration

Consulting and support for tailored deployments and advanced use cases.

Use Cases

Explore VoxelNAV in action—real-world deployments and technology showcases.

POC iPhone App Demonstration

indoor warehouse robotics navigation

Industrial Integration

indoor warehouse robotics navigation

Warehouse Navigation

Ready to explore resilient navigation for GNSS-denied environments?”

Connect with our team to discuss your navigation requirements and learn how VoxelNAV can deliver precise, infrastructure-free positioning.