TY - JOUR
T1 - Two-stage filter for inertia characteristics estimation of high-speed tumbling targets
AU - Ma, Chuan
AU - Dai, Honghua
AU - Wei, Caisheng
AU - Yuan, Jianping
N1 - Publisher Copyright:
© 2019 Elsevier Masson SAS
PY - 2019/6
Y1 - 2019/6
N2 - The estimation of the inertia characteristics of a tumbling target before capturing is one of the greatest challenges in on-orbit servicing missions, especially when the time interval between consecutive measurements is large or the rotational speed of the target is very high. In this paper, a two-stage constant state filter (TCSF) is proposed to predict the attitude and estimate the inertia characteristics, including the principal inertia ratios and the principal inertia axes' directions, of a high-speed tumbling target. The man innovation of this paper is to design an Affiliate Filter to estimate the inertia tensor of the target, based on the estimates of angular velocity from an Adaptive Constant State Filter. Compared with the conventional estimation methods like the unscented Kalman filter method, the proposed TCSF shows better stability and accuracy in strongly nonlinear situations, such as that where the time interval between consecutive measurements is 10 s and the angular velocity is more than 14 deg/s. The Monte Carlo simulations have been proposed to demonstrate the performances of the proposed TCSF method.
AB - The estimation of the inertia characteristics of a tumbling target before capturing is one of the greatest challenges in on-orbit servicing missions, especially when the time interval between consecutive measurements is large or the rotational speed of the target is very high. In this paper, a two-stage constant state filter (TCSF) is proposed to predict the attitude and estimate the inertia characteristics, including the principal inertia ratios and the principal inertia axes' directions, of a high-speed tumbling target. The man innovation of this paper is to design an Affiliate Filter to estimate the inertia tensor of the target, based on the estimates of angular velocity from an Adaptive Constant State Filter. Compared with the conventional estimation methods like the unscented Kalman filter method, the proposed TCSF shows better stability and accuracy in strongly nonlinear situations, such as that where the time interval between consecutive measurements is 10 s and the angular velocity is more than 14 deg/s. The Monte Carlo simulations have been proposed to demonstrate the performances of the proposed TCSF method.
KW - Constant state filter
KW - Inertia characteristic estimation
KW - On orbit service
KW - Tumbling spacecraft
UR - https://www.scopus.com/pages/publications/85064325895
U2 - 10.1016/j.ast.2019.04.011
DO - 10.1016/j.ast.2019.04.011
M3 - 文章
AN - SCOPUS:85064325895
SN - 1270-9638
VL - 89
SP - 333
EP - 344
JO - Aerospace Science and Technology
JF - Aerospace Science and Technology
ER -