Aims. This paper investigates the chaotic rotation of an oblate satellite in the context of chaos control. Methods. A model of planar oscillations, described with the Beletskii equation, was investigated. The Hamiltonian formalism was utilized to employ a control method for suppressing chaos. Results. An additive control term, which is an order of magnitude smaller than the potential, is constructed. This allows not only for significantly diminished diffusion of the trajectory in the phase space, but turns the purely chaotic motion into strictly periodic motion
Control of chaotic instability in a simplified model of a spinning spacecraft with dissipation is ac...
[[abstract]]In this paper, controlling chaos in a gyroscope has been studied. It has shown that one ...
n the past one-and-half decades, a large number of studies have shown that chaotic henomena are obse...
The present paper is devoted to discuss both the chaos and optimal control of the steady rotation...
Eccentric and inclined resonant orbits exhibit complex motions that have the potential to become cha...
The possibility of dynamic chaos in the spin motion of minor natural planetary satellites is studied...
The chaotic behavior in the rotational motion of planetary satellites is studied. A satellite is mod...
This paper investigates the problem of stabilising one of the high order periodic orbits of a chaoti...
Chaos has an intrinsically richness related to its structure and, because of that, there are benefit...
In this paper, we discussed an asymmetric satellite moving on a Keplerian elliptic orbit in a gravit...
Control of chaotic vibrations in a simplified model of a spinning spacecraft with a circumferential ...
In this paper, we discussed an asymmetric satellite moving on a Keplerian elliptic orbit in a gravit...
Control of chaotic vibrations in a dual-spin spacecraft with an axial nutational damper is achieved ...
When the length of the tether remains constant, the relative planar motion of the tethered subsatell...
This paper investigates the problem of stabilising one of the high order periodic orbits of a chaoti...
Control of chaotic instability in a simplified model of a spinning spacecraft with dissipation is ac...
[[abstract]]In this paper, controlling chaos in a gyroscope has been studied. It has shown that one ...
n the past one-and-half decades, a large number of studies have shown that chaotic henomena are obse...
The present paper is devoted to discuss both the chaos and optimal control of the steady rotation...
Eccentric and inclined resonant orbits exhibit complex motions that have the potential to become cha...
The possibility of dynamic chaos in the spin motion of minor natural planetary satellites is studied...
The chaotic behavior in the rotational motion of planetary satellites is studied. A satellite is mod...
This paper investigates the problem of stabilising one of the high order periodic orbits of a chaoti...
Chaos has an intrinsically richness related to its structure and, because of that, there are benefit...
In this paper, we discussed an asymmetric satellite moving on a Keplerian elliptic orbit in a gravit...
Control of chaotic vibrations in a simplified model of a spinning spacecraft with a circumferential ...
In this paper, we discussed an asymmetric satellite moving on a Keplerian elliptic orbit in a gravit...
Control of chaotic vibrations in a dual-spin spacecraft with an axial nutational damper is achieved ...
When the length of the tether remains constant, the relative planar motion of the tethered subsatell...
This paper investigates the problem of stabilising one of the high order periodic orbits of a chaoti...
Control of chaotic instability in a simplified model of a spinning spacecraft with dissipation is ac...
[[abstract]]In this paper, controlling chaos in a gyroscope has been studied. It has shown that one ...
n the past one-and-half decades, a large number of studies have shown that chaotic henomena are obse...