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High Precision Compensation for a Total Reflection Prism Laser Gyro Bias in Consideration of High Frequency Oscillator Voltage

机译:考虑到高频振荡器电压的全反射棱镜激光陀螺仪偏置的高精度补偿

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摘要

Traditional compensation methods based on temperature-related parameters are not effective for complex total reflection prism laser gyro (TRPLG) bias variation. Because the high frequency oscillator voltage (UHFO) fundamentally affects the TRPLG bias, and the UHFO has a stronger correlation with the TRPLG bias when compared with the temperature, an introduction of UHFO into the TRPLG bias compensation can be evaluated. In consideration of the limitations of least squares (LS) regression and multivariate stepwise regression, we proposed a compensation method for TRPLG bias based on iterative re-weighted least squares support vector machine (IR-LSSVM) and compared with LS regression, stepwise regression, and LSSVM algorithm in large temperature cycling experiments. When temperature, slope of temperature variation, and UHFO were selected as inputs, the IR-LSSVM based on myriad weight function improved the TRPLG bias stability by 61.19% to reach the maximum and eliminated TRPLG bias drift. In addition, the UHFO proved to be the most important parameter in the process of TRPLG bias compensation; accordingly, it can alleviate the shortcomings of traditional compensation based on temperature-related parameters and can greatly improve the TRPLG bias stability.
机译:基于温度相关参数的传统补偿方法对于复杂的全反射棱镜激光陀螺仪(TRPLG)偏差变化无效。由于高频振荡器电压(UHFO)从根本上影响TRPLG偏置,并且与温度相比,UHFO与TRPLG偏置具有更强的相关性,因此可以评估将UHFO引入TRPLG偏置补偿中。考虑到最小二乘(LS)回归和多元逐步回归的局限性,我们提出了基于迭代再加权最小二乘支持向量机(IR-LSSVM)的TRPLG偏差补偿方法,并与LS回归,逐步回归,和LSSVM算法在大型温度循环实验中的应用。当选择温度,温度变化的斜率和UHFO作为输入时,基于无数权函数的IR-LSSVM将TRPLG偏置稳定性提高了61.19%,从而达到了最大并消除了TRPLG偏置漂移。此外,UHFO被证明是TRPLG偏置补偿过程中最重要的参数。因此,它可以减轻基于温度相关参数的传统补偿的缺点,并可以大大提高TRPLG偏置的稳定性。

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