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Realization on identification and compensation methods for the temperature model of hemispherical resonator gyro (HRG)

机译:半球形谐振器陀螺(HRG)温度模型的识别和补偿方法的实现

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In view of technological requirement of the long life satellite, influence of temperature variation on zero bias of HRG is investigated. By testing the temperature of HRG, it can be seen that great influence on gyro bias are caused by temperature variation, which does not satisfy the accuracy requirement. For different application fields, the time series analysis method with multiple variables and limited memory recursive least square algorithm are employed, respectively. Moreover, based on the data detected, the parameters of the constructed model are identified. Then, the timeliness and the accuracy of the two algorithms are compared. Finally, by detecting multiple sets of data, the comparison results between the two models denote that temperature drift is compensated accurately and the effectiveness of the constructed model is indicated.
机译:针对长寿命卫星的技术要求,研究了温度变化对HRG零偏的影响。通过测试HRG的温度,可以看出温度变化对陀螺偏置有很大影响,这不能满足精度要求。针对不同的应用领域,分别采用了多变量时间序列分析方法和有限记忆递归最小二乘算法。此外,基于检测到的数据,可以识别所构建模型的参数。然后,比较了两种算法的时效性和准确性。最后,通过检测多组数据,两个模型之间的比较结果表明温度漂移得到了精确补偿,并表明了所构建模型的有效性。

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