Robust Filtering for Fine Alignment on the Moving Base for SINS

Kai Yao, Qidan Zhu
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引用次数: 1

Abstract

In this paper, Krein space robust filtering for fine alignment on the moving base for Strap-down Inertial Navigation System (SINS) is proposed. The state modeling of SINS with parameter uncertainty is established. The system uncertainty is described through Sum Quadratic Constraint (SQC) which leads to optimization problem of an objective deterministic quadratic form. To handle the optimization, the corresponding formal stochastic system in Krein space is established according to the quadratic form, then the priori and the posteriori estimation recursions of Krein space linear estimation to fine alignment for SINS with time-varying bias is given. Finally, the simulation shows the property of proposed method.
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捷联惯导动基精细对准鲁棒滤波
针对捷联惯导系统,提出了一种基于Krein空间鲁棒滤波的动基精细对准方法。建立了具有参数不确定性的捷联惯导系统状态模型。系统的不确定性通过求和二次约束(SQC)来描述,从而得到一个客观确定的二次型优化问题。为了处理优化问题,根据二次型在Krein空间中建立了相应的形式化随机系统,然后给出了具有时变偏差的捷联惯导系统的Krein空间线性估计的先验和后验估计递推式。最后通过仿真验证了该方法的有效性。
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