Robotics Autonomy Engineer-Planning and Control - Federal

FieldAI

$100K — $200K *
Aerospace & Defense
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • PhD in Robotics, Computer Science, Electrical Engineering, or related field (2+ years of experience) or MS with 4+ years or BS with 8+ years of experience.
  • Strong understanding of motion planning and control systems.
  • Experience with algorithms for various robotic platforms.
  • Familiarity with motion planning libraries like OMPL, MoveIt, and Nav2 stack.
  • Proficient in C++ and Python on Linux systems.
  • Experience with ROS/ROS 2 middleware.
  • Knowledge of sensors such as LiDAR, depth cameras, IMUs, GPS.

Responsibilities

  • Design and develop motion planning algorithms for complex real-world challenges.
  • Create optimization-driven methods for efficient trajectory generation.
  • Tune control algorithms for precise operation of robotic systems.
  • Ensure collaborative operation across perception, planning, and control layers.
  • Establish testing pipelines from unit validation to full deployment.
  • Implement simulations to evaluate and benchmark algorithms.
  • Analyze real-world deployment data to improve algorithm performance.

Benefits

  • Comprehensive health benefits package.
  • Equity options in a growing company.
  • Flexible work arrangements and generous time off.
  • Opportunity to work in a stimulating environment with advanced robotics.
  • Collaborative team culture with global colleagues.
Full Job Description
About the Job

Field AI is building the future of autonomy, from rugged terrain to real-world deployment. We are on a mission to develop intelligent, adaptable robotic systems that operate beyond simulation and thrive in unpredictable environments.

As our Robotics Autonomy Engineer - Planning and Control, you will design, implement, and deploy advanced motion planning and control algorithms that enable our robots to move with precision, robustness, and efficiency across diverse environments. You will work on navigation, trajectory generation, and motion control for robotic platforms ranging from wheeled and legged systems to complex humanoid architectures. If enabling robots to navigate challenging, dynamic environments excites you, and you want to work where your code works in the physical world - this is your role. This is Field AI.
What You'll Get To Do

1. Develop Robust Motion Planning Algorithms
  • Design, develop, and refine motion and navigation planning algorithms for challenging real-world scenarios such as narrow passages, dynamic obstacles, and complex environments.
  • Design optimization-driven approaches for path and trajectory generation that ensure smooth, reliable, and efficient robot navigation across modalities.
  • Ensure scalability, reusability, and adaptability of planning approaches across diverse deployment contexts.

2. Advance Control and Planning Integration
  • Develop and tune control algorithms that ensure precise trajectory tracking and stable operation across different robotic systems.
  • Collaborate across autonomy layers to ensure seamless coordination between perception, planning, and control for robust real-world performance.

3. Validate and Test Across the Stack
  • Build and maintain testing pipelines from unit-level validation to full robot deployment.
  • Utilize simulation and testing environments for algorithm evaluation, benchmarking, and regression validation.
  • Analyze real-world telemetry to diagnose issues, identify improvements, and enhance algorithm robustness.

4. Diagnose and Improve Field Performance
  • Investigate and resolve issues arising from field deployments through structured data analysis and debugging.
  • Deliver targeted improvements that address specific challenges while maintaining general-case reliability and performance.

What You Have
  • PhD degree in Robotics, Computer Science, Electrical Engineering, or a related field with 2+ years of industry or applied research experience or MS degree in a related field with 4+ years of relevant experience, or BS degree in a related field with 8+ years of relevant experience.
  • Strong understanding of motion planning, trajectory generation, and control systems.
  • Experience developing algorithms for one or more robotic systems (wheeled, legged, wheeled-legged, humanoid).
  • Familiarity with motion planning libraries like OMPL, MoveIt, Nav2 stack etc
  • Solid programming skills in C++ and Python on Linux-based systems.
  • Familiarity with robotics middleware such as ROS/ROS 2.
  • Experience with robot sensors including LiDARs, stereo/depth cameras, IMUs, GPS, wheel encoders.

The Extras That Set You Apart
  • Exposure to real-world deployment of autonomous systems.
  • Background in optimization, control, or numerical methods for trajectory planning.
  • Familiarity with learning-based or hybrid planning approaches.
  • Contributions to open-source planning or control frameworks.
  • Familiarity with safety-critical autonomy and industrial robotics use cases.


$100,000 - $200,000 a year

Compensation

The salary range for this role is $100,000-$200,000. The actual offer for this position will be based on factors such as relevant experience, competencies, certifications, and how well the candidate meets the qualifications outlined above. Part of our compensation package also includes full benefits, equity, and generous time.

We are headquartered in always-sunny Irvine, Southern California and have US based and global teammates.

Join us, shape the future, and be part of a fun, close-knit team on an exciting journey!

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