Research on Temperature Modeling and Compensation Technology of I/F Conversion Circuit

Ying Zhu, M. Fu, X. Bu, Jun Hu, Weiqin Zhao
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Abstract

The change of ambient temperature affects the conversion accuracy of current/frequency (I/F) conversion circuit, which is the digital output system of inertial devices, and then affects the output accuracy of inertial navigation system. To solve this problem, this paper studied the temperature characteristics of I/F conversion circuit and found out the main influencing factors of temperature drift of I/F conversion circuit. From the perspective of engineering application, a method based on temperature drift modeling and compensation of I/F conversion circuit was proposed. Through repeated experiments, the temperature compensation model of I/F conversion circuit was obtained. The experimental results showed that in the temperature range of −20°C~+20°C, the output frequency of the I/F conversion circuit after compensation changed from 12Hz/°C to 3.2Hz/°C, and the mean square error decreased from 727.4Hz to 56.27Hz, which effectively improved the temperature characteristics of the I/F conversion circuit.
I/F转换电路温度建模与补偿技术研究
环境温度的变化会影响惯性器件数字输出系统——电流/频率(I/F)转换电路的转换精度,进而影响惯导系统的输出精度。为了解决这一问题,本文对I/F转换电路的温度特性进行了研究,找出了影响I/F转换电路温度漂移的主要因素。从工程应用的角度出发,提出了一种基于温度漂移建模和I/F转换电路补偿的方法。通过反复实验,得到了I/F转换电路的温度补偿模型。实验结果表明,在−20℃~+20℃的温度范围内,补偿后I/F转换电路的输出频率从12Hz/℃变化到3.2Hz/℃,均方误差从727.4Hz减小到56.27Hz,有效改善了I/F转换电路的温度特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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