DocumentCode :
1248953
Title :
Quaternion-Optimization-Based In-Flight Alignment Approach for Airborne POS
Author :
Taizhong, Kang ; Jiancheng, Fang ; Wei, Wang
Author_Institution :
Inertial Technol. Key Lab., Beijing Univ. of Aeronaut. & Astronaut., Beijing, China
Volume :
61
Issue :
11
fYear :
2012
Firstpage :
2916
Lastpage :
2923
Abstract :
Position and Orientation System (POS) is a key technology that provides motion compensation information for imaging sensor in airborne remote sensing. In-flight alignment (IFA) is an important alignment method that can improve reaction speed and accuracy of measurement for airborne POS. The traditional IFA methods based on the Kalman filter and the adaptive extended Kalman filter (AEKF) are severely affected by flight maneuver; severe maneuver may result in alignment accuracy degeneration or failure. On the basis of optimization-based alignment method for static base alignment, a novel IFA method based on quaternion optimization is devised in this paper, aiming to boost up the robustness and the accuracy of IFA, which extends the range of the application of optimization-based alignment method from static base alignment to IFA. The proposed algorithm has the advantage that it can avoid the affection from severe maneuver. The real-time implementation is given. Flight experiment demonstrates that, compared with the IFA method based on AEKF, the proposed algorithm is better in converging speed and robusticity with the same alignment accuracy.
Keywords :
adaptive Kalman filters; airborne radar; image sensors; motion compensation; optimisation; radar imaging; remote sensing by radar; AEKF; IFA method; adaptive extended Kalman filter; airborne POS; airborne remote sensing; imaging sensor; in-flight alignment approach; motion compensation; position and orientation system; quaternion optimization-based alignment; static base alignment; Aircraft navigation; Global Positioning System; Inertial navigation; Kalman filters; Real time systems; Flight maneuver; Position and Orientation System (POS); Strapdown Inertial Navigation System (SINS)/Global Positioning System (GPS) integrated navigation system; in-flight alignment (IFA); quaternion-constrained least square; robust;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2012.2202989
Filename :
6246704
Link To Document :
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