The classical Laplace plane as a stable disposal orbit for geostationary satellites
暂无分享,去创建一个
[1] Thomas Schildknecht,et al. Optical surveys for space debris , 2007 .
[2] Donald J. Kessler,et al. Analysis of orbital perturbations acting on objects in orbits near geosynchronous earth orbit , 1992 .
[3] Emily E. Peacock,et al. Plastic Accumulation in the North Atlantic Subtropical Gyre , 2010, Science.
[4] T. Schildknecht,et al. Variation of the area-to-mass ratio of high area-to-mass ratio space debris objects , 2022 .
[5] Thomas Schildknecht,et al. Variation of Area-to-Mass-Ratio of HAMR Space Debris Objects , 2011, 1110.3935.
[6] Nicholas L. Johnson. A new look at the GEO and near-GEO regimes: Operations, disposals, and debris , 2012 .
[7] N. Johnson,et al. Risks in Space from Orbiting Debris , 2006, Science.
[8] D. Scheeres,et al. Long-term dynamics of high area-to-mass ratio objects in high-Earth orbit , 2013 .
[9] J. V. D. Ha,et al. The probability of collisions on the geostationary ring , 1981 .
[10] D. Scheeres,et al. The Classical Laplace Plane and its use as a Stable Disposal Orbit for GEO , 2013 .
[11] Donald J. Kessler,et al. Reduced debris hazard resulting from a stable inclined geosynchronous orbit , 1993 .
[12] Daniel J. Scheeres,et al. On the Milankovitch orbital elements for perturbed Keplerian motion , 2014 .
[13] Christian Circi,et al. Frozen Orbital Plane Solutions for Satellites in Nearly Circular Orbit , 2013 .
[14] BLRToN C. CouR-PALArs,et al. Collision Frequency of Artificial Satellites : The Creation of a Debris Belt , 2022 .
[15] V. Kudielka,et al. Balanced earth satellite orbits , 1994 .
[16] D. Scheeres,et al. Secular orbit variation due to solar radiation effects: a detailed model for BYORP , 2009 .
[17] G. E. Cook,et al. Discussion of paper by S. J. Peale, ‘Dust belt of the Earth’ , 1967 .
[18] S. Tremaine,et al. SATELLITE DYNAMICS ON THE LAPLACE SURFACE , 2008, 0809.0237.
[19] J. Liou,et al. Orbital Dynamics of High Area-To-Mass Ratio Debris and Their Distribution in the Geosynchronous Region , 2005 .
[20] Andrew J. Petro. Techniques for orbital debris control , 1992 .
[21] G. Beutler,et al. Optical observations of space debris in GEO and in highly-eccentric orbits , 2002 .
[22] C. Pardini,et al. Long-term dynamical evolution of high area-to-mass ratio debris released into high earth orbits , 2010 .
[23] F. Mignard,et al. About an unsuspected integrable problem , 1984 .
[24] J. Laskar,et al. Precession of a planet with a satellite , 2006 .
[25] Daniel J. Scheeres,et al. Orbit Mechanics About Asteroids and Comets , 2012 .
[26] Milutin Milankovictch,et al. Canon of insolation and the ice-age problem : (Kanon der Erdbestrahlung und seine Anwendung auf das Eiszeitenproblem) Belgrade, 1941. , 1998 .
[27] G. E. Cook,et al. The long-period motion of the plane of a distant circular orbit , 1964, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[28] H. U. Keller,et al. On the stability of dust particle orbits around cometary nuclei , 1995 .