- Robot type
- Drone
- Location
- AustinTexasUSA
- Job type
- Artificial Intelligence
- Posted
- Jul 18, 2025
Full-time
Senior Computer Vision Engineer
Job description
This role owns some of the hardest perception problems in autonomous flight.
You will develop computer vision systems for autonomous landing, targetless landing zone evaluation, and perception-driven navigation in real operating environments. Your work will directly impact how aircraft identify safe landing areas, operate in degraded environments, and complete missions reliably without prepared infrastructure.
You will work across perception, sensor fusion, and flight systems to improve how aircraft understand terrain, obstacles, and environmental conditions during autonomous operations.
The ideal candidate has experience deploying perception systems on real robotic, automotive, or aerial…
Job responsibilities
- Develop and deploy computer vision systems for autonomous landing and landing zone evaluation
- Build perception systems for targetless landing in unstructured and dynamic environments
- Mentor junior perception engineers and raise the quality bar for how perception systems are designed, tested, and deployed
- Develop algorithms for terrain understanding, obstacle detection, and environment classification
- Work with onboard camera, IMU, GPS, and other sensor data in real flight environments
- Improve system performance using operational flight data, testing, and iteration
- Collaborate across autonomy, GNC, and flight operations teams to integrate perception into flight behaviors
- Debug perception and autonomy issues observed during simulation, ground testing, and flight operations
Job requirements
- Experience with autonomous aircraft or aerial robotics
- Experience with landing zone evaluation, terrain classification, or visual navigation systems
- Background in SLAM, visual odometry, or GPS-denied navigation
- Experience with embedded or real-time systems
- Familiarity with ROS2 or similar robotics frameworks
- Experience deploying perception systems to resource-constrained platforms
