Shield AI is a venture-backed defense-tech company with the mission of protecting service members and civilians with intelligent systems. Its products include Hivemind autonomy software, V-BAT and X-BAT aircraft, and Aechelon simulation and synthetic reality technologies. With offices and facilities across the U.S., Europe, the Middle East, and Asia-Pacific, Shield AI’s technology actively supports operations worldwide. For more information, visit www.shield.ai. Follow Shield AI on LinkedIn, X, Instagram, and YouTube.
Job Description:
Help build the intelligence that enables autonomous systems to navigate the world with confidence. In this role, you’ll develop cutting-edge estimation and navigation technology, transforming advanced algorithms into high-performance software that powers resilient autonomy in complex, real-world environments.
What you'll do:
Research and develop state-of-the-art state estimation and navigation algorithms to enable resilient autonomy in challenging GPS-denied environments.
Design and deploy production-grade C++ software for embedded robotic systems operating in dynamic, real-world environments.
Build and maintain rigorous unit, integration, and system-level tests to ensure system robustness and safety.
Develop and enhance modeling, calibration, and simulation tools for inertial and vision-based navigation systems.
Contribute to roadmap planning, feature decomposition, and agile execution alongside a multidisciplinary team of autonomy engineers.
Continuously enhance performance analysis, benchmarking, and validation pipelines to drive rapid innovation and improvement.
Required qualifications:
M.S. in Aerospace Engineering, Electrical Engineering, Robotics, Computer Science, or a related field; minimum 2+ years of related professional work experience if you have an M.S. degree, or 0 years if you are a new Ph.D. graduate.
Professional proficiency in modern C++ (C++11 or newer) and strong object-oriented design skills.
Hands-on experience deploying low-latency C++ applications to embedded Linux platforms.
Professional experience designing and implementing state estimation algorithms (e.g., EKF, UKF, Particle Filters, graph-based optimization).
Familiarity with VIO, SLAM, or multi-sensor fusion frameworks (e.g., GTSAM, Ceres, OpenVINS).
Strong working knowledge of CI pipelines and automated testing frameworks for C++.
Ability to independently deploy high-reliability code suitable for real-world autonomous systems.
Familiarity with prototyping in Python or MATLAB is welcome, but this role demands professional C++ production deployment skills. Candidates whose primary experience is in MATLAB or Python are unlikely to find this position a good fit.
Preferred qualifications:
Deep understanding of graph-based optimization for state estimation.
Experience in benchmarking and system validation for real-world navigation performance.
#LI-KC3
#LD
Full-time regular employee offer package:
Pay within range listed + Bonus + Benefits + Equity
Temporary employee offer package:
Pay within range listed above + temporary benefits package (applicable after 60 days of employment)
Salary compensation is influenced by a wide array of factors including but not limited to skill set, level of experience, licenses and certifications, and specific work location. All offers are contingent on a cleared background and possible reference check. Military fellows and part-time employees are not eligible for benefits. Please speak to your talent acquisition representative for more information.
###
If you have a disability or special need that requires accommodation, please let us know.
Job trackerSave this job, mark it applied, or hide it — tracked right here in your browser, no account needed.Save, applied, or hide this job, tracked no account needed.