Deorbiting a Spacecraft from a Highly Inclined Elliptical Orbit
Deorbiting of an earth-orbiting satellite is accomplished by executing an orbit transfer maneuver, the orbit transfer maneuver resulting in transference of the satellite from an operational orbit to a disposal orbit, where the disposal orbit is substantially circular and has a nominal radius of approximately, 31,000 kilometers. The operational orbit may be substantially geosynchronous and have at least one of (i) an inclination of greater than 10 degrees and (ii) a nominal eccentricity greater than 0.1. Alternatively, the operational orbit may be a medium earth orbit.
1 . A method comprising:
deorbiting an earth-orbiting satellite by executing an orbit transfer maneuver, said orbit transfer maneuver resulting in transference of said satellite from an operational orbit to a disposal orbit,
said operational orbit being substantially geosynchronous and having at least one of (i) an inclination of greater than 10 degrees and (ii) a nominal eccentricity greater than 0.1, and
said disposal orbit being substantially circular and having a nominal radius of approximately, 31,000 kilometers.
2 . The method of claim 1 , wherein the operational orbit has an inclination of greater than 10 degrees, and a nominal eccentricity greater than 0.1.
3 . The method of claim 2 , wherein the disposal orbit has substantially the same nominal inclination as the operational orbit.
4 . The method of claim 1 , wherein the operational orbit is substantially geosynchronous and has at least one of: (i) an inclination of approximately 56 degrees; and (ii) a nominal eccentricity of approximately 0.25.
5 . The method of claim 4 , wherein the disposal orbit has substantially the same nominal inclination as the operational orbit.
6 . A method comprising:
deorbiting an earth-orbiting satellite by executing an orbit transfer maneuver, said orbit transfer maneuver resulting in transference of said satellite from an operational orbit to a disposal orbit,
said operational orbit being substantially geosynchronous and having a nominal inclination of greater than 10 degrees; and
said disposal orbit being substantially circular, and having (i) a nominal radius of approximately 31,000 kilometer and (ii) substantially the same nominal inclination as the operational orbit.
7 . The method of claim 6 , wherein the operational orbit has a nominal eccentricity greater than 0.1.
8 . The method of claim 6 , wherein the operational orbit has a nominal eccentricity of approximately 0.25.
9 . A method comprising:
deorbiting an earth-orbiting satellite by executing an orbit transfer maneuver, said orbit transfer maneuver resulting in transference of said satellite from an operational orbit to a disposal orbit,
said operational orbit being a medium earth orbit, and
said disposal orbit being substantially circular and having a nominal radius of approximately 31,000 kilometer.