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Numerical analysis of orbital transfers to Mars using solar sails and attitude control

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Published under licence by IOP Publishing Ltd
, , Citation M C Pereira et al 2017 J. Phys.: Conf. Ser. 911 012026 DOI 10.1088/1742-6596/911/1/012026

1742-6596/911/1/012026

Abstract

Solar sails present a promising alternative method of propulsion for the coming phases of the space exploration. With the recent advances in materials engineering, the construction of lighter and more resistant materials capable of impelling spaceships with the use of solar radiation pressure has become increasingly viable technologically and economically. The studies, simulations and analysis of orbital transfers from Earth to Mars proposed in this work were implemented considering the use of a flat solar sail. Maneuvers considering the delivery of a sailcraft from a Low Earth Orbit to the border of the Earth's sphere of influence and interplanetary trajectories to Mars were investigated. A set of simulations were implemented varying the attitude of the sail relative to the Sun. Results show that a sailcraft can carry out transfers with final velocity with respect to Mars smaller than the interplanetary Patched-conic approximation, although this requires a longer time of transfers, provided the attitude of the sailcraft relative to the Sun can be controlled in some points of the trajectories.

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10.1088/1742-6596/911/1/012026