AV Senior Engineer: Path planning
Indexed description
What You Will Do
In this role, you will lead the development of path and trajectory planning for high-speed highway autonomy, with responsibility for generating safe, feasible, and high-quality motion under real-world system constraints. You will design planning solutions for core highway behaviors such as lane keeping, lane changes, obstacle avoidance, and safety-critical fallback maneuvers, with particular emphasis on robustness to perception uncertainty, localization error, and timing imperfections. You will implement real-time planning algorithms across sampling, optimization, lattice, and MPC-based methods, and ensure they operate effectively within production compute budgets. Working closely with controls and vehicle integration, you will translate planning intent into dynamically feasible trajectories that respect curvature, jerk, and actuation limits while maintaining smooth and predictable behavior on the vehicle.
Requirements
Must-Haves
- PhD with 2+ years of equivalent industry experience or MSc in Robotics, Computer Science, Control, or similar, with 5+ years of equivalent industry experience
- Strong background in motion planning and optimization, including constraints, numerical stability, and real-time considerations.
- Proficiency in modern C++ with solid software engineering practices (testing, CI, profiling).
- Experience building or deploying planning systems in robotics, ADAS, or autonomous driving.
- Comfortable in Linux environments and ROS 2.
- Driving license valid in the EU.
- Startup mentality: ownership, speed, and high standards.
- Fluent English (Dutch is a plus)
- Applicants must already have the right to work in the EU. Visa sponsorship is not available
- Experience with uncertainty-aware planning, probabilistic safety, or formal verification methods.
- Exposure to vehicle dynamics constraints, tire limits, and controller integration.
- Experience with OpenDRIVE/OpenSCENARIO, scenario-based testing, or simulation platforms.
- Familiarity with functional safety concepts (ISO 26262) and SOTIF (ISO 21448).
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