What you'll do
- Implementing new features to improve the stability and reliability of our local and global pose estimates.
- Designing mitigation and fallback strategies for the pose estimation systems.
- Researching, prototyping, and experimenting with various sensors and state-of-the-art state estimation algorithms.
- Architecting, designing, and implementing software applications, as well as onboard and offboard infrastructure and tools to support those applications.
- Developing portable, scalable, and fast state measurement and optimization libraries.
- Writing performant, well-tested software, and improving code quality of the entire Autonomy team through code and design reviews.
- Validating your solutions on real vehicles in real-world scenarios.
What you'll bring
- Demonstrated experience deploying state estimation algorithms in real robots: Factor graphs, Kalman filters, particle filters, structure from motion, visual inertial odometry, lidar odometry, etc.
- Deep understanding of the design tradeoffs involved when fusing various sensing technologies: cameras (mono and stereo), LiDAR, RADAR, GNSS, IMUs, wheel encoders, etc.
- Experience implementing state estimation math effectively in software with the following libraries: Eigen, Sophus, Ceres, GTSAM, etc.
- Strong proficiency in modern C++ and experience writing efficient algorithms for resource-constrained embedded systems.
- Ability to thrive in a fast-moving, collaborative, small team environment with lots of ownership.
- Excellent analytical, communication, and documentation skills with demonstrated ability to collaborate with interdisciplinary stakeholders outside of Autonomy.
- An eagerness to get your hands dirty by testing your code on real robots at real customer farms (gives “field testing” a whole new meaning!).
What makes you a strong fit
- Experience architecting state estimation systems from scratch and understanding the design tradeoffs when leveraging filters, pose graph optimization, etc.
- Experience implementing custom factors for factor graph optimization.
- Experience with state-of-the-art visual odometry and/or lidar odometry algorithms.
- Thinks/dreams in Lie algebra.
- 5+ years of software development experience in autonomy, robotics, or a related field.
- MS or PhD in Robotics, Computer Science, Computer Engineering, Electrical Engineering, or a related field.
Top Skills
What We Do
Agtonomy brings intelligent automation to agriculture, turf, and other demanding industries through Physical AI and software services. By partnering with trusted equipment manufacturers, we deliver factory-fit technology that transforms industrial machines into smart, efficient solutions built for safety and performance. Our team combines expertise in technology, product development, and industry knowledge to address critical challenges like labor shortages, sustainability, and productivity.
Why Work With Us
Agtonomy’s AI-driven automation helps growers tackle labor shortages, improve efficiency, and manage rising costs—embedded at the factory level with the world’s leading equipment brands.






