CompassVision - Main Image
CompassVision - Thumbnail 1
CompassVision - Thumbnail 2
CompassVision - Thumbnail 3
CompassVision - Thumbnail 4

Note: Product images are provided for informational purposes only and may not accurately represent the actual product. All images are property of their respective owners. For accurate product information and specifications, please visit the official product page.

CompassVision

Software (GCS/Autonomy/Mapping)

Description

CompassVision is an AI-powered, vision-based navigation system that delivers precise positioning and autonomy in GPS-denied environments. It combines advanced image processing, sensor fusion, and machine learning to provide less than 5-meter RMS position accuracy across diverse terrain, cloud, and lighting conditions. Designed for air, ground, and dismounted operations, the system ensures mission continuity and situational awareness in contested environments through real-time integrity monitoring and scene matching capabilities.

About the Company

AEVEX Aerospace

AEVEX Aerospace provides comprehensive airborne intelligence solutions, specializing in aerospace engineering, design, operations, and navigation services. The company offers customized products an...

Core Information

Serving industries
Air Ground Maritime Surface
Product categories
Autonomy/Navigation SLAM/Visual Odometry
Name
CompassVision

Platform Compatibility

Deployment model
Edge device
System requirements
Low-SWaP design, supports Group 1-3 UAS platforms

Vehicle & Protocol Support

Vehicle types supported
Multirotor UAV Fixed-wing UAV VTOL UAV Helicopter UAV UGV USV (Surface) High-alt/Stratospheric
Communication protocols
Ethernet Serial

Sensors & Payloads

Sensors supported
RGB

Mapping & Geospatial

Processing methods
SLAM Visual Odometry INS/GNSS fusion
Accuracy metrics reported
RMSE XY RMSE Z Relative accuracy Absolute accuracy

Autonomy & Safety

Autonomy levels
Waypoint/semi-autonomous Fully autonomous
Control modes
Waypoint Survey/Mapping

Deployment, Licensing & Pricing

License model
Proprietary perpetual
Offline mode
Hardware requirements
Low-SWaP design, supports Group 1-3 UAS, manned ISR platforms, and ground systems
Edge processing