An error compensation method for transfer alignment

You-chol Lim, J. Lyou
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引用次数: 19

Abstract

This paper deals with the transfer alignment problem of SDINS (StrapDown Inertial Navigation System) subjected to roll and pitch motions of the ship. Specifically, to reduce alignment errors induced by measurement time-delay and ship body flexure, an error compensation method is deviced based on delay state augmentation and DCM (Direction Cosine Matrix) partial matching. A linearized error model for the velocity and attitude matching transfer alignment system is first derived by linearizing the nonlinear measurement equation with respect to its time delay and augmenting the delay state into the conventional linear state equations. And then DCM partial matching is properly combined to reduce effects of a ship's Y axis flexure. The simulation results show that the present method is effective enough resulting in considerably less azimuth alignment errors.
一种传递对准误差补偿方法
研究了船舶横摇和俯仰运动下捷联惯性导航系统的传递对准问题。针对测量时延和船体弯曲引起的对准误差,提出了一种基于时延状态增强和DCM (Direction Cosine Matrix)部分匹配的误差补偿方法。首先将非线性测量方程与时滞线性化,并将时滞状态增加到常规线性状态方程中,推导出速度与姿态匹配传递对准系统的线性化误差模型。然后合理结合DCM部分匹配,减小船舶Y轴弯曲的影响。仿真结果表明,该方法能够有效地减小方位角对准误差。
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