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  • ASTRODYNAMICS  (2)
  • 1
    Publication Date: 2019-06-27
    Description: The longitude-dependent part of the geopotential usually gives rise only to short-period effects in the motion of an artificial satellite. However, when the motion of the satellite is commensurable with that of the earth, the path of the satellite repeats itself relative to the earth and perturbations build up at each passage of the satellite in the same spot, so that there can be important long-period effects. In order to take these effects into account in deriving a theoretical solution to the equations of motion of an artificial satellite, it is necessary to select terms in the longitude-dependent part of the geopotential that will contribute significantly to the perturbations. Attempts made to obtain a selection that is valid in a general case, regardless of the initial eccentricity of the orbit and of the order of the resonance, are reported. The solution to the equations of motion of an artificial satellite, in a geopotential thus determined, is then derived by using Hori's method by Lie series, which, by its properties regarding canonical invariance, has proved advantageous in the classical theory.
    Keywords: ASTRODYNAMICS
    Type: NASA-CR-142672 , SAO-SPECIAL-REPT-365
    Format: application/pdf
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  • 2
    Publication Date: 2019-06-27
    Description: Equations were derived for the perturbations on an artificial satellite when the motion of the satellite is commensurable with that of the earth. This was done by first selecting the tesseral harmonics that contribute the most to the perturbations and then by applying Hori's method by use of Lie series. Here, are introduced some modifications to the perturbations, which now result in better agreement with numerical integration.
    Keywords: ASTRODYNAMICS
    Type: NASA-CR-146854 , SAO-SPECIAL-REPT-373-PT-2
    Format: application/pdf
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