Multibody dynamics for space applications is dictated by space environment such as space-varying gravity forces, orbital and attitude perturbations, control forces if any. Several methods and formulations devoted to the modeling of flexible bodies undergoing large overall motions were developed in recent years. Most of these different formulations were aimed to face one of the main problems concerning the analysis of spacecraft dynamics namely the reduction of computer simulation time. By virtue of this, the use of symbolic manipulation, recursive formulation and parallel processing algorithms were proposed. All these approaches fall into two categories, the one based on Newton/Euler methods and the one based on Lagrangian methods; both of them have their advantages and disadvantages although in general, Newtonian approaches lend to a better understanding of the physics of problems and in particular of the magnitude of the reactions and of the corresponding structural stresses. Another important issue which must be addressed carefully in multibody space dynamics is relevant to a correct choice of kinematics variables. In fact, when dealing with flexible multibody system the resulting equations include two different types of state variables, the ones associated with large (rigid) displacements and the ones associated to elastic deformations. These two sets of variables have generally two different time scales if we think of the attitude motion of a satellite whose period of oscillation, due to the gravity gradient effects, is of the same order of magnitude as the orbital period, which is much bigger than the one associated to the structural vibration of the satellite itself. Therefore the numerical integration of the equations of the system represents a challenging problem.

Breakwell lecture: General background and approach to multibdoy dynamics for space applications / Paolo, Santini; Gasbarri, Paolo. - STAMPA. - 6:(2006), pp. 4036-4060. (Intervento presentato al convegno AIAA 57th International Astronautical Congress, IAC 2006 tenutosi a Valencia nel 2 October 2006 through 6 October 2006).

Breakwell lecture: General background and approach to multibdoy dynamics for space applications

GASBARRI, Paolo
2006

Abstract

Multibody dynamics for space applications is dictated by space environment such as space-varying gravity forces, orbital and attitude perturbations, control forces if any. Several methods and formulations devoted to the modeling of flexible bodies undergoing large overall motions were developed in recent years. Most of these different formulations were aimed to face one of the main problems concerning the analysis of spacecraft dynamics namely the reduction of computer simulation time. By virtue of this, the use of symbolic manipulation, recursive formulation and parallel processing algorithms were proposed. All these approaches fall into two categories, the one based on Newton/Euler methods and the one based on Lagrangian methods; both of them have their advantages and disadvantages although in general, Newtonian approaches lend to a better understanding of the physics of problems and in particular of the magnitude of the reactions and of the corresponding structural stresses. Another important issue which must be addressed carefully in multibody space dynamics is relevant to a correct choice of kinematics variables. In fact, when dealing with flexible multibody system the resulting equations include two different types of state variables, the ones associated with large (rigid) displacements and the ones associated to elastic deformations. These two sets of variables have generally two different time scales if we think of the attitude motion of a satellite whose period of oscillation, due to the gravity gradient effects, is of the same order of magnitude as the orbital period, which is much bigger than the one associated to the structural vibration of the satellite itself. Therefore the numerical integration of the equations of the system represents a challenging problem.
2006
AIAA 57th International Astronautical Congress, IAC 2006
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Breakwell lecture: General background and approach to multibdoy dynamics for space applications / Paolo, Santini; Gasbarri, Paolo. - STAMPA. - 6:(2006), pp. 4036-4060. (Intervento presentato al convegno AIAA 57th International Astronautical Congress, IAC 2006 tenutosi a Valencia nel 2 October 2006 through 6 October 2006).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/212266
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