Efficient Ephemeris Models for Spacecraft Trajectory Simulations on GPUs

Author:

Schrammel Fabian,Renk Florian,Mazaheri Arya,Wolf Felix

Publisher

Springer International Publishing

Reference16 articles.

1. Arora, N., Russell, R.P.: A GPU accelerated multiple revolution lambert solver for fast mission design. AAS/AIAA Space Flight Mech. Meet. 136, 10–198 (2010)

2. Bachman, N.J.: SPK Required Reading of NAIF SPICE Toolkit Hypertext Documentation (2017). http://naif.jpl.nasa.gov/pub/naif/toolkit_docs

3. ESA and JAXA: BepiColombo: The Europe’s first mission to Mercury (2019). https://sci.esa.int/bepicolombo

4. Fehlberg, E.: Classical Fifth-, Sixth-, seventh-, and Eight-Order Runge-Kutta Formulas with Stepsize Control. National Aeronautics and Space Administration (1968)

5. Folkner, W.M., Williams, J.G., Boggs, D.H., Park, R.S., Kuchynka, P.: The planetary and lunar ephemerides DE430 and DE431. Interplanetary Netw. Prog. Rep. 196, 1–81 (2014)

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