NetCDF4 using Conda, the following code is used: $ conda install "scipy>=1.0" Importing weather data from netCDF files. The nedCDF4 package can be installed if there is interest in The first 4 prerequisites come with Anaconda, but Scipy might need However, in case the user wants to install these packages manually, they can do Installed when RocketPy is installed using either pip or conda. netCDF4 >= 1.4 (optional, requires Cython)Īll of these packages, with the exception of netCDF4, should be automatically.The following is needed in order to run RocketPy: These instructions will get you a copy of RocketPy up and running on your local machine. Then, you can read the Getting Started section to get your own copy! Getting Started You can preview RocketPy's main functionalities by browsing through a sample notebook either in Google Colab or in MyBinder! If you want to be a part of this and make RocketPy your own, join our Discord server today! Previewing And this is all thanks to a great community of users, engineers, developers, marketing specialists, and everyone interested in helping. The number of stars and forks for this repository is skyrocketing. RocketPy is growing fast! Many unviersity groups and rocket hobbyist have already started using it. other types of motors)Ĭheck out documentation details using the links below: Custom continuous and discrete control laws.apogee and lifting off speed as a function of mass) Straightforward engineering analysis (e.g.Burn rate and mass variation properties from thrust curve.Sensor data can be augmented with noise.Parachutes with external trigger functions Drag coefficients can be easily imported from other sources (e.g.Barrowman equations for lift coefficients (optional). International Standard Atmosphere (1976).Solved using LSODA with adjustable error tolerances.Rigorous treatment of mass variation effects.Main features Nonlinear 6 degrees of freedom simulations Furthermore, the implementation facilitates complex simulations, such as multi-stage rockets, design and trajectory optimization and dispersion analysis. Weather conditions, such as wind profile, can be imported from sophisticated datasets, allowing for realistic scenarios. The code is written as a Python library and allows for a complete 6 degrees of freedom simulation of a rocket's flight trajectory, including high fidelity variable mass effects as well as descent under parachutes. RocketPy is a trajectory simulation for High-Power Rocketry built by Projeto Jupiter.
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