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System-Level Temperature Compensation Method for the RLG-IMU Based on HHO-RVR

机译:基于HHO-RVR的RLG-IMU的系统级温度补偿方法

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摘要

The ring laser gyro inertial measurement unit has many systematic error terms and influences each other. These error terms show a complex nonlinear drift that cannot be ignored when the temperature changes, which seriously affects the stability time and output accuracy of the system. In this paper, a system-level temperature modeling and compensation method is proposed based on the relevance vector regression method. First, all temperature-related parameters are modeled; meanwhile, the Harris hawks optimization algorithm is used to optimize each model parameter. Then, the system compensation is modeled to stabilize the system output to the desired temperature. Compared with the least square method, the fitting performance comparison and the system dynamic compensation experiment prove this method’s superiority. The root mean square error, the mean absolute error, the - squared, and the variance of residual increased by an average of 35.27%, 39.29%, 2.29%, and 30.34%, respectively.
机译:环激光陀螺惯性测量单元具有许多系统的误差术语和影响彼此。 这些错误术语显示了一种复杂的非线性漂移,当温度变化时不能忽略,这严重影响了系统的稳定时间和输出精度。 本文提出了一种基于相关矢量回归方法的系统级温度建模和补偿方法。 首先,建模所有温度相关参数; 同时,Harris Hawks优化算法用于优化每个模型参数。 然后,建模系统补偿以使系统输出到所需温度。 与最小二乘法相比,拟合性能比较和系统动态补偿实验证明了这种方法的优势。 根均方误差,平均绝对误差,平方,残余的方差平均分别为35.27%,39.29%,2.29%和30.34%。

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