The Theory of Canonical Perturbations Applied to Attitude Dynamics and to the Earth Rotation. Osculating and Nonosculating Andoyer Variables

Abstract

In the method of variation of parameters we express the Cartesian coordinates or the Euler angles as functions of the time and six constants. If, under disturbance, we endow the "constants" with time dependence, the perturbed orbital angular velocity will consist of a partial time derivative and convective term that includes time derivatives of the "constants". The Lagrange constraint, often imposed for convenience, nullifies the convective term and thereby guarantees that the functional dependence of the velocity on the time and "constants" stays unaltered under disturbance. "Constants" satisfying this constraint are called osculating elements. Otherwise, they are simply termed orbital or rotational elements. When the equations for the elements are required to be canonical, it is normally the Delaunay variables that are chosen to be the orbital elements, and it is the Andoyer variables that are typically chosen to play the role of rotational elements. (Since some of the Andoyer elements are time-dependent even in the unperturbed setting, the role of "constants" is actually played by their initial values.) The Delaunay and Andoyer sets of variables share a subtle peculiarity: under certain circumstances the standard equations render the elements nonosculating. In the theory of orbits, the planetary equations yield nonosculating elements when perturbations depend on velocities. To keep the elements osculating, the equations must be amended with extra terms that are not parts of the disturbing function [Efroimsky, M., Godreich, P,J. Math. Phys, 44, 5958-5977 (2003); Astron. Astrophys. 415, 1187-1199 (2004); Efroimsky, M.; Celest. Mech. Dyn. Astron. 91, 75-108 (2005); Ann. New York Acad. Acad. Sci. 1065, 346-374 (2006)].

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Document Details

Document Type
Technical Report
Publication Date
Jun 21, 2007
Accession Number
ADA470382

Entities

People

  • Alberto Escapa
  • Michael Efroimsky

Organizations

  • United States Naval Observatory

Tags

Communities of Interest

  • Air Platforms
  • Space

DTIC Thesaurus Topics

  • Angular Momentum
  • Cartesian Coordinates
  • Celestial Mechanics
  • Coordinate Systems
  • Dynamics
  • Earth Models
  • Equations
  • Equations Of Motion
  • Euler Angles
  • Kinetic Energy
  • Orbital Elements
  • Orbital Mechanics
  • Orbits
  • Perturbations
  • Rotation
  • Solar Radiation
  • Time Dependence

Fields of Study

  • Physics

Readers

  • Calculus or Mathematical Analysis
  • Educational Psychology
  • Space Exploration and Orbital Mechanics.

Technology Areas

  • Space
  • Space - Orbital Debris