DocumentCode :
1765828
Title :
High-order attitude compensation in coning and rotation coexisting environment
Author :
Maosong Wang ; Wenqi Wu ; Jinling Wang ; Xianfei Pan
Author_Institution :
Nat. Univ. of Defense Technol., Changsha, China
Volume :
51
Issue :
2
fYear :
2015
fDate :
42095
Firstpage :
1178
Lastpage :
1190
Abstract :
With the development of high-accuracy inertial navigation system inertial sensors, such as ring laser gyroscopes and atomic spin gyroscopes, it is increasingly important to improve the strapdown inertial navigation algorithms to match such high-accuracy inertial sensors. For example, the existing inertial navigation algorithms have not taken into account the triple-cross-product term of noncommutativity error. However, theoretical analysis demonstrates that the ignored triple-cross-product term is nonignorable under coning motion with constant angular rate precession environments. In this paper, a new high-accuracy rotation vector algorithm is proposed for strapdown inertial navigation. The Taylor series about time is used for error analysis and optimization of the new algorithm. General maneuvers and coning motion with constant angular rate precession environments are considered in establishing the coefficient equations in the proposed algorithm. Error drift equations are given after the error compensation. Normalized quaternion under coning motion with constant angular rate precession environments and Savage´s severe integrated angular-rate profiles are used to numerically verify the new algorithm. The results indicate that the new high-order attitude updating algorithm can improve inertial navigation accuracy.
Keywords :
error analysis; error compensation; inertial navigation; time series; Savages severe integrated angular-rate profiles; Taylor series; angular rate precession environments; coefficient equations; coning motion; error analysis; error compensation; error drift equations; high-order attitude compensation; high-order attitude updating algorithm; normalized quaternion; rotation vector algorithm; strapdown inertial navigation; Accuracy; Algorithm design and analysis; Gyroscopes; Heuristic algorithms; Inertial navigation; Sensors; Taylor series;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/TAES.2014.140084
Filename :
7126174
Link To Document :
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