Rapid alignment method of INS with large initial azimuth error under uncertain flexure disturbances

Xin Liu, Bo Wang, Z. Deng, Shunting Wang, Hua Liu
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Abstract

A new nonlinear initial alignment method was proposed for the rapid alignment of the ship-borne weapon INS with large initial azimuth attitude error under uncertain flexure deformation disturbances. Considering the flexure deformation of certain axis has the severest affection to the angular rate measurement, velocity and partial angular rate were used as the measurements in this method, in which the pitch rate is subtracted from the angular rate measurement. Simulation results show that comparing with the conventional solution, which compensates the flexure deformation by augmenting its model into the alignment filter, the proposed alignment method can accomplish the transfer alignment of a mooring ship's weapon INS with large heading error rapidly and accurately, and it is more reliable in the situation of flexure deformation uncertainty.
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不确定挠性扰动下初始方位角误差较大的惯性导航系统快速对准方法
针对初始方位姿态误差较大的舰载武器惯导系统在不确定挠性变形干扰下的快速对准问题,提出了一种新的非线性初始对准方法。考虑到某一轴的弯曲变形对角速度测量的影响最大,该方法采用速度和部分角速度作为测量值,并在角速度测量值中减去俯仰率。仿真结果表明,与传统的将模型扩展到对准滤波器中补偿柔性变形的方法相比,所提出的对准方法能够快速、准确地完成大航向误差系泊舰武器惯导系统的传递对准,在柔性变形不确定的情况下更加可靠。
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