Perturbations
Posted: Tue Mar 10, 2015 9:27 pm
Hi Martin - these differences may well be due to perturbations that need to be accounted for by calculations of solar, lunar and planetary returns. Michael Erlewine's Manual of Computer Programming for Astrologers, which forms the basis of much astrological programming today, mentions the need for calculation routines to take account of perturbations in orbit.
Erlewine says of the solar and lunar return routine in his book "This program makes use of a program originally submitted to MATRIX Magazine by Robert Hand. This program includes a good number of the major solar and lunar perturbations - which is why the rather good accuracy." (p. 103-104)
The solar and lunar perturbations are due to a wide range of factors.
https://en.wikipedia.org/wiki/Perturbat ... tronomy%29
Mitton (1991, 1993) in her Dictionary of Astronomy defines 'perturbation' as "a temporary or localised gravitational disturbance in the otherwise uniform motion of a body under a stable gravitational force." Essentially, each body in the solar system is subject to a range of gravitational forces which impact on its own motion and these need to be accounted for in the calculation of return positions.
Erlewine says of the solar and lunar return routine in his book "This program makes use of a program originally submitted to MATRIX Magazine by Robert Hand. This program includes a good number of the major solar and lunar perturbations - which is why the rather good accuracy." (p. 103-104)
The solar and lunar perturbations are due to a wide range of factors.
https://en.wikipedia.org/wiki/Perturbat ... tronomy%29
Mitton (1991, 1993) in her Dictionary of Astronomy defines 'perturbation' as "a temporary or localised gravitational disturbance in the otherwise uniform motion of a body under a stable gravitational force." Essentially, each body in the solar system is subject to a range of gravitational forces which impact on its own motion and these need to be accounted for in the calculation of return positions.
