旋转惯性导航系统中转台振动引起的圆锥运动分析

Jizhou Lai, Pin Lv, Jian-ye Liu, Ling Zhang
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引用次数: 9

摘要

转台是旋转惯性导航系统的重要组成部分。由于加工精度的原因,转台纵轴与工作台旋转轴之间存在一定的角度误差,导致工作台产生振动,进而导致RINS精度的损失。首先,建立了转台振动误差模型。分析结果表明,由于转台的振动,惯性测量单元产生锥度误差。然后,分析了锥度运动引起的锥度误差,讨论了基于等效旋转矢量的多样本补偿算法的效果。同时,讨论了旋转方式对径向旋进误差的影响,结果表明,前后旋转对径向旋进误差有较好的补偿效果。最后,通过仿真验证了上述理论分析。
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Analysis of coning motion caused by turntable's vibration in rotation inertial navigation system
Turntable is an important part of rotation inertial navigation system (RINS). Due to machining accuracy, there exists certain angle error between vertical axis of the turntable and table rotation axis, which leads to table's vibration and further the loss of RINS's accuracy. Firstly, the error of turntable's vibration is modeled. And the analysis results show that inertial measurement unit (IMU) does coning error because of turntable's vibration. Then, the conning error caused by coning motion is analyzed, and the effect of multi-sample compensation algorithm based on the equivalent rotation vector is discussed. At the same time, the effect of rotation manner to RINS's coning error is discussed, and the result shows that back and forth rotation has a good compensation effect to the error. Finally, the above theoretical analyses are verified through simulation.
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