TY - GEN
T1 - On initial alignment methods for manned Lunar Ascent Module
AU - Wang, Qingzhe
AU - Wang, Ping
AU - Guo, Linli
AU - Deng, Zhihong
PY - 2013
Y1 - 2013
N2 - Since the orbit injection accuracy of the Lunar Lander Ascent Module (LLAM) is largely determined by the accuracy of inertial navigation system (INS), an accurate alignment of INS is crucial and needed to be implemented before LLAM leaves the lunar surface. Lunar alignment differs from ground alignment in low rotational rate and gravity. To provide satisfying results, new alignment methods should be adopted. In this paper, a novel technique named star tracker aided alignment is proposed which combines inertial and stellar observations using a Kalman filter algorithm. Performance of the approach is compared with that of traditional self-alignment method using simulation data. The results show that the star tracker aided alignment can effectively estimate the misalignment angels. Besides, the gyro accuracy deeply affects the heading accuracy of self-alignment method, while having no influence on star tracker aided alignment.
AB - Since the orbit injection accuracy of the Lunar Lander Ascent Module (LLAM) is largely determined by the accuracy of inertial navigation system (INS), an accurate alignment of INS is crucial and needed to be implemented before LLAM leaves the lunar surface. Lunar alignment differs from ground alignment in low rotational rate and gravity. To provide satisfying results, new alignment methods should be adopted. In this paper, a novel technique named star tracker aided alignment is proposed which combines inertial and stellar observations using a Kalman filter algorithm. Performance of the approach is compared with that of traditional self-alignment method using simulation data. The results show that the star tracker aided alignment can effectively estimate the misalignment angels. Besides, the gyro accuracy deeply affects the heading accuracy of self-alignment method, while having no influence on star tracker aided alignment.
KW - Manned lunar landing
KW - inertial navigation system
KW - initial alignment
KW - star tracker
UR - https://www.scopus.com/pages/publications/84886569318
U2 - 10.1109/ASCC.2013.6606271
DO - 10.1109/ASCC.2013.6606271
M3 - Conference contribution
AN - SCOPUS:84886569318
SN - 9781467357692
T3 - 2013 9th Asian Control Conference, ASCC 2013
BT - 2013 9th Asian Control Conference, ASCC 2013
T2 - 2013 9th Asian Control Conference, ASCC 2013
Y2 - 23 June 2013 through 26 June 2013
ER -