首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Error analysis and compensation for dual-axis inertial navigation system with horizontal rotation modulation
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Error analysis and compensation for dual-axis inertial navigation system with horizontal rotation modulation

机译:水平旋转调制双轴惯性导航系统的误差分析与补偿

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摘要

Rotational inertial navigation system can significantly improve the navigation accuracy by rotating the inertial measurement unit about gimbals periodically. The precise calibration for installation errors and scale factor errors in rotational inertial navigation system can contribute to better navigation performance further. Especially in application requiring excellent azimuth precision, the horizontal rotation modulation will be badly required to modulate the vertical sensors' errors as periodic variation, which can make inhibiting effect on the navigation errors. However, it also enlarges the impact of specific errors, which contains gyro's scale factor error and the installation errors of inertial components. To meet the requirement of navigation precision, this paper has made error analysis and established mathematical model for a proposed horizontal rotation modulation in dual-axis rotational inertial navigation system. The crucial error parameters can be calibrated based on the measurements of attitude and velocity output without additional equipment. The results of experiment performed in an actual system demonstrate that navigation accuracy has been improved significantly, fully illustrating the significance and necessity of the calibration for specific errors in the horizontal rotation modulation.
机译:通过定期旋转惯性测量单元,旋转惯性导航系统可以显着提高导航精度。旋转惯性导航系统中的安装误差和比例因子误差的精确校准可以进一步促进更好的导航性能。特别是在需要优异的方位角精度的应用中,水平旋转调制将被要求调制垂直传感器的误差作为周期性变化,这可以对导航误差进行抑制效果。但是,它还扩大了特定错误的影响,该错误包含陀螺仪的比例因子误差和惯性组件的安装错误。为了满足导航精度的要求,本文对双轴旋转惯性导航系统中提出的水平旋转调制进行了误差分析和建立了数学模型。可以基于姿态和速度输出的测量来校准关键误差参数,而无需额外的设备。在实际系统中进行的实验结果表明导航精度显着提高,完全说明了水平旋转调制中特定误差的校准的意义和必要性。

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