Title of article
Nonsingular modeling of the equinoctial precession of planets using the Euler parameters
Author/Authors
Gurfil، نويسنده , , Pini and Klein، نويسنده , , Itzik، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
14
From page
223
To page
236
Abstract
This paper develops a nonsingular model for the effect of equinoctial precession on natural and artificial satellite orbits based on the Euler parameters instead of the Euler angles. The use of Euler parameters removes the zero-inclination singularity in the variational equations, thus facilitating numerical integration of low-inclination orbits. Euler-parameter-based planetary and variational equations are developed. These equations are subsequently used for modeling the long-periodic effect of a uniformly precessing reference frame on a given orbit. The Euler parameter-based model is used for simulating the orbit of Deimos, taking into account the Martian oblateness and precession of the spin axis. It is shown that the new model yields an order-of-magnitude faster simulation than the classical element-based model.
Keywords
Euler parameters , planetary dynamics , Equinoctial precession , Oblateness , Orbital perturbations
Journal title
PLANETARY AND SPACE SCIENCE
Serial Year
2007
Journal title
PLANETARY AND SPACE SCIENCE
Record number
2309417
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