What you'll do:
- Develop and implement real-time state estimation algorithms including inertial navigation, sensor fusion, and alternative navigation methods for GPS-denied or degraded environments.
- Integrate data from IMUs, GNSS receivers, visual odometry, magnetometers, barometers, and radar into robust estimation frameworks.
- Design sensor processing pipelines focused on accuracy, robustness, and system-level fault tolerance.
- Collaborate with autonomy, software, and hardware teams to ensure end-to-end integration of navigation and PNT systems.
- Conduct simulation, lab testing, and field trials to evaluate algorithm performance under real-world conditions.
- Stay current on advancements in state estimation and navigation technologies and help adapt new innovations into deployable solutions.
Required qualifications:
- Typically requires a minimum of 3 years of relevant experience with a bachelor’s degree; or 2 years with a master’s degree; or 1 years with a PhD; or equivalent practical experience.
- Familiarity with algorithms.
- Proficient in C++11 or newer in real-time environments.
- Comfortable working in Linux, with experience using standard command-line tools and scripting.
- Strong written and verbal communication skills with a collaborative mindset.
- Demonstrated success working in fast-paced development cycles and delivering high-quality results.
Preferred qualifications:
- Experience developing and deploying real-time navigation or sensor fusion algorithms using IMUs, GPS, or other sensors.
- Strong understanding of filtering and estimation techniques (e.g., Kalman filters, EKF, UKF, particle filters).
- Experience implementing inertial navigation algorithms in degraded or GPS-denied conditions.
- Exposure to visual odometry or computer vision-based navigation approaches.
- Experience optimizing code for performance on compute-constrained platforms.
- Familiarity with CUDA or hardware acceleration techniques (e.g., FPGAs).
- Experience transitioning navigation solutions from research into production environments.
Shield AI Compensation & Benefits Highlights
The following summarizes recurring compensation and benefits themes identified from responses generated by popular LLMs to common candidate questions about Shield AI and has not been reviewed or approved by Shield AI.
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Healthcare Strength — Healthcare coverage is described as excellent, spanning medical, dental, vision, mental‑health EAP, and optional pet insurance. Location‑based wellness perks such as onsite or discounted gym access reinforce the health offering.
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Equity Value & Accessibility — Equity is positioned as a standard component of total rewards for full‑time employees, with stock/RSUs noted across roles. Access appears broad‑based rather than limited to select cohorts.
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Leave & Time Off Breadth — Time‑off programs highlight paid parental leave alongside an accrual‑based PTO structure with a high carryover cap. Flexibility elements such as flexible hours complement the core leave offering.
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What We Do
Founded in 2015, Shield AI is a venture-backed deep-tech company with the mission of protecting service members and civilians with intelligent systems. Its products include the V-BAT and X-BAT aircraft, Hivemind Enterprise, and the Hivemind Vision product lines. With offices and facilities across the U.S., Europe, the Middle East, and the Asia-Pacific, Shield AI’s technology actively supports operations worldwide.
Why Work With Us
What makes Shield AI special is our people. We unlock the power of autonomy, and in the face of overwhelming odds and challenges, we find ways to win and make a difference for our customers. We bring together software, AI, and aerospace engineering disciplines to deploy the most intelligent aviation capabilities in the world.
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