TY - GEN
T1 - Meeting orbit determination requirements for a small satellite mission
AU - Pimienta-Peñalver, Adonis
AU - Linares, Richard
AU - Crassidis, John L.
PY - 2012
Y1 - 2012
N2 - A study is conducted with the goal of utilizing estimation techniques on measurements obtained from various onboard resources such as a Sun sensor, a magnetometer and a commercial GPS unit in order to approximate the true trajectory of the vehicle in realtime and minimize the error associated with the process. This carries significant relevance to the field of orbit determination, where a small mission could operate a relatively cheap system for tracking purposes. This paper models a GPS sensor to become available only 5 minutes each day, which approximates a worst-case scenario where sparse pseudorange data is only possible due to suboptimal operating conditions for commercial GPS receivers taken to the space environment. Using a dynamic propagation model, which includes effects of Earth's gravity, J2 zonal harmonics, and atmospheric drag, a sequential filtering method is used in order to estimate the states (position and velocity) of the vehicle with respect to time. This study demonstrates the capability of this system to achieve an error of approximately 15 meters, which is greatly influenced by the inclusion.
AB - A study is conducted with the goal of utilizing estimation techniques on measurements obtained from various onboard resources such as a Sun sensor, a magnetometer and a commercial GPS unit in order to approximate the true trajectory of the vehicle in realtime and minimize the error associated with the process. This carries significant relevance to the field of orbit determination, where a small mission could operate a relatively cheap system for tracking purposes. This paper models a GPS sensor to become available only 5 minutes each day, which approximates a worst-case scenario where sparse pseudorange data is only possible due to suboptimal operating conditions for commercial GPS receivers taken to the space environment. Using a dynamic propagation model, which includes effects of Earth's gravity, J2 zonal harmonics, and atmospheric drag, a sequential filtering method is used in order to estimate the states (position and velocity) of the vehicle with respect to time. This study demonstrates the capability of this system to achieve an error of approximately 15 meters, which is greatly influenced by the inclusion.
UR - https://www.scopus.com/pages/publications/84874845285
M3 - Conference contribution
AN - SCOPUS:84874845285
SN - 9780877035855
T3 - Advances in the Astronautical Sciences
SP - 805
EP - 815
BT - Guidance and Control 2012 - Advances in the Astronautical Sciences
T2 - 35th Annual AAS Rocky Mountain Section Guidance and Control Conference
Y2 - 3 February 2012 through 8 February 2012
ER -