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  • session 9
  • 9. Guidance, Navigation & Control (3)

    Papers

    1. Control Design & Sensitivity Analysis for a Deployable Entry Vehicle with Aerodynamic Control Surfaces

    2. Autonomous and Adaptive Guidance for Interplanetary Trajectories

    3. Model Predictive Static Programming for Bang-off-Bang Low-Thrust Neighboring Control Law Design

    4. Integrated guidance and control using online reinforcement learning for launch vehicle upper stage recovery

    5. SUB-OPTIMAL THRUST MODULATION ALGORITHM FOR AUTONOMOUS SOFT LUNAR LANDING

    6. Polarized Skylight-Aided Autonomous Navigation Method for Mars Rovers

    7. Multi-Constrained Real-Time Entry Guidance Using Deep Neural Networks

    8. autonomous optical navigation using fpga-based vector code correlation algorithm for deep space missions

    9. Autonomous Space-Based Shape Estimation Using Range Sensors

    10. Manifold-based robust stabilization of libration-point orbit with navigational uncertainty

    11. Optimal Guidance Trajectories for a Nanosatellite Docking with a Tumbling Resident Space Object using a high fidelity J2 and Quadratic Drag Perturbations Model

    12. Fuel-Efficient Deep Reinforcement Learning for Planetary Landing

    . Terrain Relative Navigation with Tightly Coupled Range-Visual-Inertial Odometry

    . Vectored thrust maneuver algorithm for interplanetary missions with multiple constraints