Flight Mechanics Engineer (Modelling & Simulation)

Open 15d

Roles and Responsibilities

As a Flight Mechanics Engineer (Modeling and Simulation), the following work area and skill sets awaits you:

1. Aircraft Flight Mechanics & Dynamics

  • Develop and maintain 6-DOF nonlinear aircraft flight-dynamics models.

  • Develop mathematical models for aircraft rigid-body dynamics, aerodynamics, propulsion, actuators, landing gear, and environmental effects.

  • Perform aircraft trim, stability, control, and performance analyses across the flight envelope.

  • Determine and analyze aerodynamic derivatives, stability derivatives, control derivatives, and propulsion characteristics.

  • Perform longitudinal, lateral, and directional stability and controllability assessments.

  • Conduct performance studies including take-off, climb, cruise, descent, transition, hover/VTOL, range, endurance, and landing as applicable.

  • Develop flight-mechanics models and analysis required for flight-control-law development.

  • Generate trim points, linearised models, aerodynamic derivatives, and operating-point data for control-law design. Evolve gain scheduling, control allocation, control mixing, and mode-transition logic development.

  • Analyze control-system performance, stability margins, actuator utilization, and control authority.

  • Support SIL, MIL, PIL, HIL, iron-bird, and flight-test simulations.

2. Modeling & Simulation

  • Develop models at appropriate levels of fidelity ranging from conceptual/low-fidelity models to high-fidelity nonlinear simulations.

  • Develop and maintain simulation environments using MATLAB/Simulink, Python, C/C++, or equivalent tools.

  • Implement aircraft, propulsion, actuator, sensor, environment, and flight-control models.

  • Perform model correlation against wind-tunnel, component-test, ground-test, and flight-test data.

  • Establish model validation processes.

3. Aircraft Performance & Handling Qualities

  • Perform aircraft performance analysis and establish aircraft performance databases.

  • Conduct handling-quality assessments and support development of handling-quality criteria.

  • Evaluate aircraft response characteristics such as Time constants, Natural frequencies, Control response, Hover and transition response etc.

  • Support development and analysis of flight-envelope boundaries.

  • Develop and simulate failure, fault, and degraded-mode scenarios.

  • Support FHA, FMEA, FTA, SSA, and system safety activities from a flight-dynamics perspective.

4. Flight-Test & Data Analysis

  • Support preparation of flight-test plans, test cards, and flight-test instrumentation requirements.

  • Analyze flight-test data and correlate simulation predictions with actual aircraft behavior.

  • Perform parameter identification and estimation of aerodynamic and dynamic characteristics from flight data.

  • Investigate discrepancies between simulation, ground-test, and flight-test results.

5. Certification & Technical Documentation

  • Support preparation of engineering analyses and compliance evidence as per certification requirements.

  • Prepare technical reports, analysis notes, model documentation, simulation reports, and verification evidence.



Requirements

Required Qualifications (Must-Haves)

  • Experience: 3+ years of hands-on experience in flight mechanics, dynamics, simulation and controls.

  • Bachelor's or Master's degree in Aerospace Engineering/ Aeronautical Engineering/Mechanical Engineering/Controls Engineering or a related discipline.

  • Strong understanding of Aircraft 6-DOF equations of motion, Aerodynamics, Flight dynamics, Stability and control, Aircraft performance, Propulsion, Control systems, Numerical modelling and simulation

  • Hands-on experience with MATLAB/Simulink.

  • Good programming skills in Python and/or C/C++.

  • Experience with numerical methods, data analysis, and engineering simulations.

  • Ability to interpret aerodynamic, propulsion, and flight-test data.





Preferred Qualifications (Good-to-Haves)

Experience in one or more of the following will be highly desirable:

  • eVTOL / VTOL, UAV / UAS

  • Flight-control-law development

  • Hardware-in-the-Loop simulation

  • Real-time simulation

  • Flight-test engineering

  • System identification

  • Aerodynamic modelling

  • Wind-tunnel testing

  • DO-178C / DO-254 environments

  • Model-Based Systems Engineering (MBSE)



Benefits

  • The opportunity to work on a groundbreaking product that will redefine urban transportation.

  • A dynamic, fast-paced, and collaborative work environment with a brilliant and passionate team.

  • Competitive salary and benefits.

  • A culture of innovation where your ideas can directly impact the future of flight.



See also

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