AbstractSpacecrafts in periodic or quasi-periodic orbits near the collinear libration points are proved to be excellent platforms for scientific investigations of various phenomena. Since such periodic or quasi-periodic orbits are exponentially unstable, the station-keeping maneuver is needed. A station-keeping strategy which is found by an analytical method is presented to eradicate the dominant unstable component of the libration point trajectories. The inhibit force transforms the unstable component to a stable component. In this method, it is not necessary to determine a nominal orbit as a reference path
Published version of an article in the journal: Mathematical Problems in Engineering. Also available...
Collinear Earth-Moon libration points have emerged as locations with immediate applications. These l...
The libration point orbits in the Sun-Earth/Moon system are formed by concurrent gravitational influ...
AbstractSpacecrafts in periodic or quasi-periodic orbits near the collinear libration points are pro...
INTRODUCTION As part of the trajectory design, some current missions and a number of recent proposa...
Three-dimensional orbits in the vicinity of the interior libration point (L1) of the Sun-Earth/Moon ...
Abstract: The paper includes a literature survey of the (quasi-) periodic orbits' design a...
The shallow gravity gradient in the libration point regions enables manoeuvring at low ∆v expenses, ...
An expanding interest in mission design strategies that exploit libration point regions demands the ...
Unstable orbits about the collinear libration points require stationkeeping maneuvers to maintain th...
Space missions designed to operate along three-dimensional quasi-periodic orbits in the proximity of...
We derive two families of low-thrust station-keeping control procedures based on the dynamical prope...
Unstable orbits about the collinear libration points require stationkeeping maneuvers to maintain th...
This paper intends to give an insight on the geometry of stationkeeping strategies around Libration ...
A new method for L2 libration-point orbit stationkeeping is proposed in this paper using continuous ...
Published version of an article in the journal: Mathematical Problems in Engineering. Also available...
Collinear Earth-Moon libration points have emerged as locations with immediate applications. These l...
The libration point orbits in the Sun-Earth/Moon system are formed by concurrent gravitational influ...
AbstractSpacecrafts in periodic or quasi-periodic orbits near the collinear libration points are pro...
INTRODUCTION As part of the trajectory design, some current missions and a number of recent proposa...
Three-dimensional orbits in the vicinity of the interior libration point (L1) of the Sun-Earth/Moon ...
Abstract: The paper includes a literature survey of the (quasi-) periodic orbits' design a...
The shallow gravity gradient in the libration point regions enables manoeuvring at low ∆v expenses, ...
An expanding interest in mission design strategies that exploit libration point regions demands the ...
Unstable orbits about the collinear libration points require stationkeeping maneuvers to maintain th...
Space missions designed to operate along three-dimensional quasi-periodic orbits in the proximity of...
We derive two families of low-thrust station-keeping control procedures based on the dynamical prope...
Unstable orbits about the collinear libration points require stationkeeping maneuvers to maintain th...
This paper intends to give an insight on the geometry of stationkeeping strategies around Libration ...
A new method for L2 libration-point orbit stationkeeping is proposed in this paper using continuous ...
Published version of an article in the journal: Mathematical Problems in Engineering. Also available...
Collinear Earth-Moon libration points have emerged as locations with immediate applications. These l...
The libration point orbits in the Sun-Earth/Moon system are formed by concurrent gravitational influ...