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As Lead Controls Engineer, you will own the control systems architecture, guide algorithm development (attitude, trajectory, and mission -level control), and lead a team of controls engineers. This role combines technical depth in flight dynamics and control theory with leadership responsibilities, including mentoring, roadmap development, and cross -team collaboration with firmware, autonomy, and systems integration teams.
Architect, implement, and optimize control systems for attitude, altitude, velocity, and trajectory tracking.
Develop both low -level controllers (motor commands, stabilization) and high -level controllers (trajectory following, waypoint tracking).
Model and analyze UAV dynamics under variable payloads and flight conditions.
Explore and implement advanced control methods (e.g., LQR, MPC, adaptive control, fault -tolerant control).
Stay updated with the state of the art in control systems, UAV dynamics, and adaptive/autonomous control methods.
Drive innovation by evaluating new algorithms (e.g., AI/ML -enhanced control strategies).
Ensure documentation, safety standards, and compliance with UAV regulatory requirements.
Lead the use of simulation environments (MATLAB/Simulink, Gazebo, AirSim, SITL/HIL) for validation.
Define test cases and metrics for control performance, robustness, and safety.
Oversee parameter tuning and log analysis during lab and field flight testing.
Work closely with:
Firmware engineers to ensure low -level control implementation on embedded hardware.
Autonomy engineers to connect planners with trajectory controllers.
Perception & sensor fusion teams to leverage accurate state estimation for stable control.
Flight test team to validate and iterate in real -world conditions.
Master’s or Ph.D. in Aerospace Engineering, Controls, Robotics, or related field.
6–10 years of experience in control systems for robotics or UAVs.
Strong expertise in:
Classical control (PID, cascaded loops).
Modern control (LQR, MPC, nonlinear/adaptive control).
State estimation and dynamics modeling.
Proficiency in MATLAB/Simulink, C++, and Python.
Hands -on experience with PX4, ArduPilot, or custom autopilot stacks.
Proven experience with real -world tuning and analyzing UAV flight logs.
Experience leading small teams or projects.
Familiarity with fault -tolerant and redundant control architectures.
Knowledge of certifiable RTOS environments (SafeRTOS, INTEGRITY).
Hands -on flight testing of UAVs (quadrotors, VTOLs, fixed -wing).
Contributions to control -related research, publications, or open -source projects.
Technical leadership role at the heart of Unmannd’s flight systems.
Direct impact on real -world UAV performance and reliability.
Access to real hardware platforms, flight ranges, and simulations.
Collaborative startup culture with opportunities to grow into Head of Controls / Autonomy.
Competitive salary and equity options.
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