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Engine Control Laws and Fuel System Control Principal Engineer P4 (Onsite

Job in West Palm Beach, Palm Beach County, Florida, 33412, USA
Listing for: Prattwhitney
Full Time position
Listed on 2026-08-14
Job specializations:
  • Engineering
    Aerospace / Aviation / Avionics, Systems Engineer, Mechanical Engineer
Salary/Wage Range or Industry Benchmark: 108000 - 205000 USD Yearly USD 108000.00 205000.00 YEAR
Job Description & How to Apply Below
Position: Engine Control Laws and Fuel System Control Principal Engineer P4 (Onsite)

Country:
United States of America

Location:

US-FL-WEST PALM BEACH-777-CUST ~ 777 S Flagler ~ FLAGLER (External Site)

Position Role Type:
Onsite

U.S. Citizen, U.S. Person, or Immigration Status Requirements:
The ability to obtain and maintain a U.S. government issued security clearance is required. U.S. citizenship is required, as only U.S. citizens are eligible for a security clearance.

Security Clearance Type:
DoD Clearance:
Secret Security Clearance Status:
Active and existing security clearance required after day 1

At RTX, the world largest aerospace and defense company, 185,000 great minds are united by purpose and inspired to make a difference solving the world’s most complex problems. With our three market leading businesses, world-class operations and investments in research and development, we offer capabilities and opportunity no one else can. Together, we push the boundaries of known science and find new ways to connect and protect our world.

Pratt & Whitney is a world leader in the design, manufacture and service of aircraft engines and auxiliary power systems and has been revolutionizing modern flight for over 100 years. Join us and help shape the future of aerospace and defense.

What you Will Do:

Plan and develop model predictive control and parameter estimation algorithms for military and commercial engine programs. Develop engine, actuation, and fuel system dynamic models and apply these models for development of functional requirements for control law algorithms, fuel system and actuation dynamics. Develop model-based sensor and actuator fault detection, isolation, and accommodation (FDIA) algorithms. Collaborate with internal customers/stakeholders to identify opportunities for control law product and process improvements.

Create and improve process and standards for development, validation, and verification of engine control laws, fuel system control laws, and FDIA algorithms. Provide technical review and oversight of control and parameter estimation algorithm design and analysis. For emerging algorithm issues, lead root cause determination and corrective action throughout entire product life cycle from initial concept phases, through engine testing and in-service operation.

Develop and update control law training materials and provide mentoring and training for team members.

What You Will Learn:

Gas turbine engine control law theory and practice. Realtime gas turbine engine modeling and analysis. State estimation for gas turbine engine performance estimation. Engine operability and performance. Engine control law software verification and validation. State of the art dynamic modeling methodologies. Model based requirements processes.

Qualifications You Must Have:
  • Bachelor’s degree in Science, Technology, Engineering or Mathematics (STEM)
  • 8 years of engineering experience or 5 years with an advanced degree
Qualifications We Prefer:
  • M.S. degree
  • Expertise developing physics-based models of turbo-machinery components by applying principles and methods from thermodynamics, aerodynamics, and heat transfer and integrating component models into a numerically robust system model.
  • Expertise developing physics-based models of fuel systems and fueldraulic actuation systems.
  • Expertise developing dynamic models using the Modelica modeling language.
  • Expertise designing and analyzing estimation algorithms by applying methods and tools from multi-input multi-output dynamical linear system and estimation theory.
  • Expertise applying statistical models and methods for modeling uncertainty propagation in dynamical systems.
  • Demonstrated mastery of one or more of the following technical areas: multivariable feedback control, model predictive control, numerical optimization, state estimation, stability analysis of multivariable and hybrid systems, real-time propulsion system and fuel system dynamic modeling, simulation, and dynamic analysis.
  • Solid track record of achieving results.
  • Outstanding communication and teamwork skills.
What We Offer:
  • Benefits Relocation Assistance
  • medical
  • dental
  • vision
  • life insurance
  • short-term disability
  • long-term disability
  • 401(k) match
  • flexible spending accounts
  • flexible work schedules
  • employee…
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