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  1. Lunar Lander - Gymnasium Documentation

    Observation Space ¶ The state is an 8-dimensional vector: the coordinates of the lander in x & y, its linear velocities in x & y, its angle, its angular velocity, and two booleans that represent …

  2. GitHub - TejPotu/LunarLander: Exploration of reinforcement …

    Observation Space (8 dimensions) x - Horizontal position (-1 to 1) y - Vertical position (0 to 1) vx - Horizontal velocity (-5 to 5) vy - Vertical velocity (-8 to 8) angle - Rotation angle (-π to π) …

  3. Lunar Lander - Gym Documentation - Manuel Goulão

    Observation Space # There are 8 states: the coordinates of the lander in x & y, its linear velocities in x & y, its angle, its angular velocity, and two booleans that represent whether each leg is in …

  4. lunar_lander - Colab

    The input state of the Lunar Lander consists of following components: Horizontal Position Vertical Position Horizontal Velocity Vertical Velocity Angle Angular Velocity Left Leg Contact Right …

  5. Lunar Lander Problem (cont’d) Observation Space: An 8-dimensional vector: The coordinates of the lander in x and y Linear velocities in x and y Its angle its angular velocity 2 booleans that …

  6. Lunar Lander - Gym Documentation

    Observation Space ¶ The state is an 8-dimensional vector: the coordinates of the lander in x & y, its linear velocities in x & y, its angle, its angular velocity, and two booleans that represent …

  7. Deep Q-Network (DQN) for LunarLander-v3 - GitHub

    Observation Space Box (8, float32): Contains position, velocity, angle, angular velocity, and landing leg contact status.

  8. MohamedMaher003/LunarLander-v3-SAC · Hugging Face

    Environment Details Environment: LunarLander-v3 Action Space: Continuous (Box) Main engine: -1.0 to 1.0 Side engines: -1.0 to 1.0 Observation Space: 8-dimensional vector Position (x, y) …

  9. Lunar Lander - Gym Documentation

    Observation Space # There are 8 states: the coordinates of the lander in x & y, its linear velocities in x & y, its angle, its angular velocity, and two booleans that represent whether each leg is in …

  10. GitHub - PeytonCunningham/LunarLander_v3: CSPB Final Project …

    Observation Space: An 8-dimensional continuous vector: position (x, y) linear velocities (vx, vy) angle angular velocity left leg contact (bool) right leg contact (bool)

  11. dqn_lunar_lander_demo.ipynb - Colab

    Observation Space The state is an 8-dimensional vector: the coordinates of the lander in x & y, its linear velocities in x & y, its angle, its angular velocity, and two booleans that represent …

  12. Lunar Lander - Open AI | lunar-lander – Weights & Biases

    Oct 15, 2020 · Mixed Observation Space: Each observation contains 8 values: (Continuous): X distance from target site (Continuous): Y distance from target site (Continuous): X velocity …