首页> 外文期刊>International Journal on Smart Sensing and Intelligent Systems >INITIAL ALIGNMENT OF FIBER-OPTIC INERTIAL NAVIGATION SYSTEM WITH LARGE MISALIGNMENT ANGLES BASED ON GENERALIZED PROPORTIONALINTEGRAL-DERIVATIVE FILTER
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INITIAL ALIGNMENT OF FIBER-OPTIC INERTIAL NAVIGATION SYSTEM WITH LARGE MISALIGNMENT ANGLES BASED ON GENERALIZED PROPORTIONALINTEGRAL-DERIVATIVE FILTER

机译:基于广义比例积分微分滤波器的大惯性角光纤惯性导航系统初始对准

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Initial alignment in the presence of large misalignment angles is a critical issue in strapdown inertial navigation systems. The large initial misalignment angle adversely affects the accuracy and rapidness of the alignment process. In this paper a novel robust alignment approach is proposed based on a generalized proportional-integral-derivative filter. The proposed alignment approach has some significant advantages compared to the standard Kalman filter based alignment method. This method increases the accuracy and the convergence speed of the alignment process in the large misalignment angles problem. Experimental results also, verify the prominent performance of the presented approach in comparison to conventional standard Kalman filter based alignment method.
机译:在捷联惯性导航系统中,存在大的未对准角度的初始对准是一个关键问题。较大的初始未对准角度会不利地影响对准过程的准确性和快速性。本文提出了一种基于广义比例积分微分滤波器的新型鲁棒对准方法。与基于标准卡尔曼滤波器的对准方法相比,所提出的对准方法具有一些明显的优点。该方法提高了大偏心角问题中对准过程的精度和收敛速度。实验结果还证明,与传统的基于标准卡尔曼滤波器的对准方法相比,该方法具有突出的性能。

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