Temporary Research Engineer
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Worcester Polytechnic Institute
Worcester, MA, US
Summary
The Research Engineer will design and implement safety-critical control systems for multirotor aircraft, including developing control algorithms and safety filters. They will also conduct flight test campaigns, perform hardware validation, and optimize real-time control software.
Job Description
JOB TITLE
Temporary Research Engineer
LOCATION
Worcester
DEPARTMENT NAME
Robotics Engineering - JM
DIVISION NAME
Worcester Polytechnic Institute - WPI
JOB DESCRIPTION SUMMARY
We are looking for a Temporary Research Engineer to design, prove out, and fly safety-critical control systems for multirotor aircraft. You will develop control and runtime-assurance methods with real guarantees, then push them onto flight hardware and validate them in the air.
JOB DESCRIPTION
Key Responsibilities:
Safety-critical control design
- Develop and analyze control algorithms for quadrotors and other multirotors, including geometric control on SE(3), nonlinear MPC, robust and adaptive control, and disturbance observers.
- Design safety filters and constraint-enforcement layers using methods such as control barrier functions, reachability analysis, and contraction metrics.
- Derive and document stability, robustness, and safety guarantees, including the assumptions under which they hold and how they fail.
Implementation
- Write production-quality C++ for real-time execution on embedded flight computers, with Python for analysis and prototyping.
- Integrate with flight stacks and middleware such as ROS 2, and MAVLink.
- Meet real-time constraints on limited compute, and profile and optimize control loops accordingly.
Validation and flight test
- Run Monte Carlo campaigns, software-in-the-loop and hardware-in-the-loop testing, and adversarial and edge-case scenario suites.
- Plan and execute flight test campaigns: write test cards, define abort criteria, support flight ops, and analyze logs afterward.
- Close the loop between flight data and models, and update the models when reality disagrees.
Minimum Qualifications:
- M.S. in Aerospace Engineering, Electrical Engineering, Mechanical Engineering, Robotics, Computer Science, or a closely related field.
- Strong foundation in nonlinear control and dynamics: Lyapunov analysis, optimal control, state estimation, and rigid-body dynamics.
- Demonstrated experience with UAV or multirotor control, in research.
- Proficiency in C++ (C++14 or later) and Python, including software running on real hardware rather than only in simulation.
- Experience taking an algorithm from derivation through simulation to hardware validation.
- Clear technical writing and the ability to explain a proof and a bug with equal precision.
Hourly pay rate: $18.75 per hour. This is an on-site 20 hour per week temporary position.
FLSA STATUS
United States of America (Non-Exempt)
WPI is an Equal Opportunity Employer. All qualified candidates will receive consideration for employment without regard to race, color, age, religion, sex, sexual orientation, gender identity, national origin, veteran status, or disability. It seeks individuals from all backgrounds and experiences who will contribute to a culture of creativity, collaboration, inclusion, problem solving, innovation, high performance, and change making. It is committed to maintaining a campus environment free of harassment and discrimination.
Home to the first master’s program and one of only three fire protection engineering graduate programs in the United States, WPI’s Fire Protection Engineering Department has driven significant cutting-edge research, developed real-world solutions through its state-of-the-art fire laboratories, and graduated highly trained, influential, in-demand experts.
Our internationally renowned faculty members are recognized for cutting-edge research and teaching focused on making the world safer by tackling challenging questions about fire behavior and our response to it. Students work alongside them in state-of-the-art facilities to gain and create knowledge that informs and shapes regulatory policy, building design, manufacturing processes, first responder operations, and product performance standards.
Company size
2-10 employees
Industry
Education
Org type
Educational
Headquarters
Worcester, MA
Home to the first master’s program and one of only three fire protection engineering graduate programs in the United States, WPI’s Fire Protection Engineering Department has driven significant cutting-edge research, developed real-world solutions through its state-of-the-art fire laboratories, and graduated highly trained, influential, in-demand experts.
Our internationally renowned faculty members are recognized for cutting-edge research and teaching focused on making the world safer by tackling challenging questions about fire behavior and our response to it. Students work alongside them in state-of-the-art facilities to gain and create knowledge that informs and shapes regulatory policy, building design, manufacturing processes, first responder operations, and product performance standards.
Company size
2-10 employees
Industry
Education
Org type
Educational
Headquarters
Worcester, MA