A scalable second-order analytical orbit propagator programme based on modern and classical perturbation methods is being developed. As a first step in the validation and verification of part of our orbit propagator programme, we only consider the perturbation produced by zonal harmonic coefficients in the Earth’s gravity potential, so that it is possible to analyze the behaviour of the mathematical expressions involved in Delaunay normalization and the Krylov-Bogoliubov-Mitropolsky method in depth and determine their limits
International audienceWe chart a path toward solving for the nonlinear gravitational dynamics of col...
We propose a methodology to study the bifurcation sequences of frozen orbits when the second-order f...
The design of spatial missions to Mars requires the development of analytical theories in order to p...
A scalable second-order analytical orbit propagator programme based on modern and classical perturba...
When the elimination of the parallax and the elimination of the perigee is applied to the zonal prob...
Abstract. Using the elimination of the parallax followed by the Delaunay normalization, we present a...
This article provides a method for finding initial conditions for perturbed frozen orbits around inh...
Abstract. Using the elimination of the parallax followed by the Delaunay normalization, we present a...
This article provides a method for finding initial conditions for perturbed frozen orbits around inh...
In year 2000 a house-made orbital propagator was developed by the SDG-UPM (former Grupo de Dinámica ...
Determining higher order perturbations for lunar orbiter by Krylov-Bololiubov and Poincare method
Four widely used algorithms for the computation of the Earth's gravitational potential and its first...
The selection of orbit propagation models strongly affects various space situational awareness appli...
Two new intermediary orbits of the artificial satellite problem are proposed. The analytical solutio...
This report presents the canonical Hamiltonian formulation of relative satellite motion. The unpertu...
International audienceWe chart a path toward solving for the nonlinear gravitational dynamics of col...
We propose a methodology to study the bifurcation sequences of frozen orbits when the second-order f...
The design of spatial missions to Mars requires the development of analytical theories in order to p...
A scalable second-order analytical orbit propagator programme based on modern and classical perturba...
When the elimination of the parallax and the elimination of the perigee is applied to the zonal prob...
Abstract. Using the elimination of the parallax followed by the Delaunay normalization, we present a...
This article provides a method for finding initial conditions for perturbed frozen orbits around inh...
Abstract. Using the elimination of the parallax followed by the Delaunay normalization, we present a...
This article provides a method for finding initial conditions for perturbed frozen orbits around inh...
In year 2000 a house-made orbital propagator was developed by the SDG-UPM (former Grupo de Dinámica ...
Determining higher order perturbations for lunar orbiter by Krylov-Bololiubov and Poincare method
Four widely used algorithms for the computation of the Earth's gravitational potential and its first...
The selection of orbit propagation models strongly affects various space situational awareness appli...
Two new intermediary orbits of the artificial satellite problem are proposed. The analytical solutio...
This report presents the canonical Hamiltonian formulation of relative satellite motion. The unpertu...
International audienceWe chart a path toward solving for the nonlinear gravitational dynamics of col...
We propose a methodology to study the bifurcation sequences of frozen orbits when the second-order f...
The design of spatial missions to Mars requires the development of analytical theories in order to p...