Senior GNC AutoPilot

Tiberius Aerospace Inc.Tucson, AZ
$145,000 - $190,000Onsite

About The Position

Tiberius Aerospace is seeking a Senior Guidance Navigation & Controls Engineer to lead autopilot design, stability analysis, and control law development for Sceptre across its full flight envelope. This role owns the flight control system architecture from gun-launch transient dynamics through supersonic and hypersonic ramjet cruise, including control surface sizing, actuator specification, and control law design. You will be the aerodynamic-control interface owner, the technical lead for all GN&C autopilot milestone content, and the program's authority on vehicle stability, control authority, and autopilot performance.

Requirements

  • B.S. or M.S. in Aerospace Engineering or Mechanical Engineering.
  • 8 or more years of flight dynamics and control law design experience on guided munitions, missiles, or high-performance aerospace vehicles.
  • Demonstrated expertise in classical and modern control design such as PID, LQR, H-infinity, mu-synthesis, gain scheduling, and/or modeling following control.
  • Strong background in 6-DOF simulation and model integration for control law evaluation.
  • Proficiency in MATLAB and Simulink for control law design, linear analysis, system identification and nonlinear simulation.
  • Experience with stability analysis and robustness verification under model uncertainty.
  • Must be a U.S. citizen and eligible to obtain and maintain a U.S. government security clearance.

Nice To Haves

  • Experience with fin-stabilized or spin-stabilized gun-launched projectile dynamics including Magnus effect, spin-yaw coupling, and dynamic stability derivatives.
  • Background with ramjet or rocket-powered high-speed vehicle flight control design.
  • Familiarity with deployable or pop-out fin control surface design and hinge mechanism integration.
  • Experience with adaptive or robust control methods for vehicles with significant aerodynamic uncertainty.
  • Background in control-structures interaction analysis for flexible or articulated fin configurations.
  • Active U.S. Secret or Top Secret security clearance.

Responsibilities

  • Lead flight control system design including autopilot architecture, control law development, and gain scheduling from transonic through hypersonic flight regimes.
  • Perform stability analysis using aerodynamic databases and define stability margin requirements for the Sceptre flight envelope.
  • Analyze gun-launch transient dynamics including muzzle exit stability, setback loads, and bore-rider interactions with control surfaces.
  • Define control surface geometry, placement, and actuation system requirements including hinge moment, torque, bandwidth, and slew rate.
  • Develop and validate control laws in MATLAB and Simulink and define requirements for embedded flight software implementation.
  • Lead control system performance verification covering closed-loop bandwidth, disturbance rejection margins, and robustness to aerodynamic uncertainty.
  • Support wind tunnel test planning for control surface effectiveness measurement and dynamic derivative data acquisition.
  • Lead GN&C autopilot technical content at milestone reviews and produce supporting technical documentation.
  • Develop and maintain linear analysis tools in order to assess stability margins, bandwidth, and control authority.
  • Perform nonlinear simulation of the closed-loop flight control system in the 6-DOF trajectory simulation to evaluate autopilot robustness.
  • Analyze gun-launch and muzzle exit dynamics and define control surface deployment timing and authority constraints during the launch transient.
  • Define actuator bandwidth, slew rate, and torque requirements based on aerodynamic hinge moment data and closed-loop control performance requirements.
  • Develop gain scheduling logic for the full flight envelope and validate gain set transitions across.
  • Perform sensitivity analysis and evaluate control law robustness to aerodynamics , mass properties, propulsion, sensor and actuator errors and uncertainty.
  • Support structural dynamics mode identification from test data and update structural notch filter designs to maintain stability margins.
  • Develop and maintain the flight control system requirements document and ensure flow-down to autopilot algorithm and flight software specifications.
  • Interface with the aerodynamics team to define aero database format, coverage, and uncertainty bounds required for control law development.
  • Coordinate with the structures team on control surface structural design, hinge line loads, and fin deployment mechanisms.
  • Support propulsion team interfaces on ramjet throttle-body aerodynamic interaction and CG shift effects on stability.
  • Support range safety planning and define control system-related safing and flight termination logic for test activities.
  • Participate in design reviews and evaluate engineering changes for stability and control impact.

Benefits

  • Equity participation
  • Comprehensive health benefits
  • 401(k)
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