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#

spacecraft-dynamics-and-control

Here are 24 public repositories matching this topic...

Astrodynamics with Python book, software, and videos. Spacecraft trajectory and attitude modeling and simulation

  • UpdatedJul 30, 2024
  • Python

Development of star simulator software for star sensor research.

  • UpdatedJul 16, 2021
  • Python

Repository of codes for my learning journey in space dynamics and control

  • UpdatedSep 15, 2025
  • Jupyter Notebook

FlexibleSpacecraft.jl is an Open Source Spacecraft Attitude-Structure Coupling Simulator developed in Julia Language. This project is quite new and under active initial development for open-source release.

  • UpdatedAug 3, 2023
  • Julia

Meta-Reinforcement Learning for Spacecraft Proximity Operations Guidance and Control in Cislunar Space

  • UpdatedSep 30, 2024
  • Python
ZERUA

MATLAB files and Simulink models for the course of Spacecraft Dynamics and Control, Sharif University of Technology.

  • UpdatedFeb 21, 2021
  • MATLAB

Code base for disturbance-robust backup control barrier functions (DR-bCBFs).

  • UpdatedJan 23, 2025
  • Python

Executable Textbook for Spacecraft Dynamics

  • UpdatedOct 13, 2025
  • Jupyter Notebook

A Matlab script to have an initial assessment of the spacecraft magnetorquers flight dynamics

  • UpdatedSep 15, 2021
  • MATLAB

Designing an interplanetary trajectory to planet Mars 🌕

  • UpdatedDec 31, 2022
  • MATLAB

Satellite Attitude Animation and Simulator (SAAS)

  • UpdatedSep 3, 2024
  • MATLAB

Spacecraft Guidance and Navigation Assignments from Politecnico Di Milano 2022

  • UpdatedNov 21, 2023
  • MATLAB

Main repository for the codes for the final project of the course ' Spacecraft attitude dynamics' at Politecnico di Milano

  • UpdatedJan 3, 2023
  • MATLAB
HAL-Hybrid-AI-Layer

HAL, the Hybrid Artificial-Intelligence Layer, is the future of artificial intelligence. It's a layered approach that combines different AI techniques to create a more complex and adaptable system. HAL's layers work together to gather data from the environment, interpret it, learn from it, and make informed decisions based on that knowledge.

  • UpdatedApr 4, 2023
  • Lua

These are all the astrophysics projects in my final year. My final-year project focuses on orbital transfer optimisation using gradient descent and the Markov Chain Monte Carlo method for uncertainty evaluation.

  • UpdatedNov 6, 2025
  • Jupyter Notebook

This project builds upon the foundation established in my numerical optimization coursework. It employs advanced nonlinear, multi-objective numerical methods to optimize the trajectory of a spacecraft as it navigates the inner solar system and executes a gravity assist around Earth.

  • UpdatedFeb 6, 2025
  • Jupyter Notebook

Repository for a personal project implementing MPC on spacecraft relative motion models.

  • UpdatedMar 25, 2025
  • Python

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