arXiv · 1601.02583
Asteroid Deflection Using a Spacecraft in Restricted Keplerian Motion
Abstract
A method for asteroid deflection that makes use of a spacecraft moving back and forth on a segment of an appropriate Keplerian orbit about the asteroid is described and evaluated. It is shown that, on average, the spacecraft describing such a trajectory can exert a significantly larger force on the asteroid than e.g. a stationary gravity tractor, thereby reducing the time needed to effect a desired velocity change for the asteroid. Furthermore, the current method does not require canted thrusters on the spacecraft (unlike a stationary gravity tractor), markedly reducing the amount of fuel needed to create a given change in the asteroid velocity. In addition, the method allows for the simultaneous use of several spacecraft, further strengthening the overall tugging effect on the asteroid, and distributing the thrust requirement among the spacecraft.
Explore related subjects
Keep this discovery
Yohannes Ketema. 2016-01-11. Asteroid Deflection Using a Spacecraft in Restricted Keplerian Motion. https://doi.org/10.1016/j.actaastro.2017.03.004
Cite the original work for its findings. Save a collection to share your selection of sources.