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Agent guide: [/agents.md](https://www.wearedevelopers.com/agents.md). --- # Motion Simulator Washout Algorithms Expert - **Company:** Amentum Services, Inc. - **Location:** Houston, TX, United States (Remote available) - **Contract:** Permanent contract - **Skills:** Algorithm Design, C++ (Programming Language), Data Visualization, Linux, Dynamical Systems, Python (Programming Language), Kinematics, MATLAB, Machine Learning, Mathematica, Performance Tuning, Software Tools, Real Time Simulation, Scientific Computating, Simulation Software, Robot Operating System - **Published:** September 4, 2026 - **Apply:** https://www.amentumcareers.com/jobs/R0169595 ## About the Role Are you passionate about human space exploration, understanding the origins of the universe, and working with a passionate and diverse team to make a difference? If you are, we need you!, * Typically, educational requirements are the equivalent of a BS with at least 20 years of experience. * Ph.D. in Mathematics, Applied Mathematics, Physics, or related technical discipline and a minimum of (20) years of experience in applied mathematics. + Demonstrated experience developing advanced mathematical models for dynamic systems. + Experience with motion simulation, robotics, control systems, or vehicle dynamics. + Experience designing numerical algorithms and simulation software. * Technical Knowledge: + Motion cueing and washout algorithm design. + Classical and modern control theory. + Optimization methods. + State-space modeling. + Dynamic systems analysis. + Parallel robot kinematics and dynamics. + Stewart platforms and hexapod motion systems. + Numerical methods and scientific computing. + Real-time simulation architectures. * Software Skills: + Python + C++ + MATLAB/Simulink + ROS + NASA Trick + Linux/Unix environments + Mathematica + Scientific visualization tools Requisition Preferences: * Experience developing simulator washout filters for aerospace or spaceflight applications. * Experience with NASA or commercial simulator programs. * Experience with Stewart platforms, hexapods, or cable-driven parallel robots. * Knowledge of dual quaternions, Lie derivatives, and advanced robotic motion representations. * Experience developing controls for parallel actuated systems. * Published research in dynamics, controls, simulation, robotics, or motion cueing. * Familiarity with human-in-the-loop simulation and human factors evaluation., * Must be able to complete a U.S. government background investigation. * Management has the prerogative to select at any level for which the position is advertised. Essential Functions Work Environment Generally, an office environment, but can involve inside or outside work depending on task. Physical Requirements Work may involve sitting or standing for extended periods (90% of time). May require lifting and carrying up to 25 lbs. (5% of time). Equipment and Machines Standard office equipment (PC, telephone, printer, etc.). Attendance Regular attendance in accordance with established work schedule is critical. Ability to work outside normal schedule and adjust schedule to meet peak periods and surge requirements. ## Description The Motion Simulator Washout Algorithms Expert is responsible for the research, design, development, validation, and optimization of advanced motion cueing and washout algorithms for high-fidelity motion simulation systems. The successful candidate will serve as a technical leader in the development of novel motion cueing methodologies that maximize motion realism while respecting physical limitations of motion platforms such as Stewart platforms, hexapod systems, cable-driven robots, and other parallel-actuated simulators., * Develop advanced motion cueing and washout algorithms for six-degree-of-freedom (6DOF) motion simulators. * Design adaptive, model-based, optimal, and nonlinear washout filters to improve simulator fidelity and user realism. * Research human vestibular and motion perception characteristics to enhance simulator performance. * Create mathematical models that reproduce translational and rotational motion cues within workspace constraints. * Evaluate classical, optimal-control, machine learning, and hybrid approaches to motion cueing. * Support development of washout filters for lunar, planetary, rover, lander, and spacecraft simulation systems. * Develop dynamic models of motion platforms. * Perform kinematic and dynamic analyses using matrix methods, Lie derivatives, quaternions, and dual quaternions. * Design and implement advanced control systems for parallel manipulators and motion simulators. * Conduct stability, robustness, and performance analysis of control architectures. * Develop numerical methods for constrained, under-actuated, and over-actuated systems. * Architect and develop simulation software for motion platform control and validation. * Implement algorithms in C++, Python, MATLAB/Simulink, ROS, NASA Trick, or similar simulation environments. * Develop real-time motion cueing software for hardware-in-the-loop test facilities. * Create software tools for visualization, tuning, testing, and performance assessment. * Support integration of simulator software with vehicle dynamics models. * Perform frequency-domain and time-domain performance evaluations. * Analyze subjective and objective metrics of motion realism. * Develop validation methodologies correlating simulated motion with target vehicle dynamics. * Support simulator acceptance testing and operational readiness reviews. ## Related Videos - [How I built my own intelligent Robot Arm from Scratch](https://www.wearedevelopers.com/videos/100097-how-i-built-my-own-intelligent-robot-arm-from-scratch) - [Enhancing AI-based Robotics with Simulation Workflows](https://www.wearedevelopers.com/videos/472-enhancing-ai-based-robotics-with-simulation-workflows) - [Leveraging Large Language Models for Legacy Code Translation: Challenges and Solutions](https://www.wearedevelopers.com/videos/1157-leveraging-large-language-models-for-legacy-code-translation-challenges-and-solutions) - [Docker network without Docker](https://www.wearedevelopers.com/videos/1418-docker-network-without-docker) - [Robots are coming into the wild! 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