The compensation of nonlinear thermal bias drift of resonant rate sensor (RRS) using fuzzy logic

D.G. Kim, S.K. Hong
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引用次数: 16

Abstract

In this paper, our attention is focused on the compensation of the nonlinear thermal bias (zero-rate-output) drift of RRS (Resonant Rate Sensor), which originates from a number of sources, including manufacturing tolerances, material inhomogeneity and inevitable mechanical characteristic variation of the cylinder with temperature. Motivated by the capability of fuzzy logic in managing nonlinearity, the nonlinearity of bias was represented by Takagi-Sugeno (TS) fuzzy model over the entire range of operating temperature. Then, the fuzzy model was directly used for compensation of nonlinear bias drift by subtracting the estimated output from the raw data of RRS. By doing this, we can guarantee the robust (against temperature variations) sensor performance throughout entire operating temperature ranges.
利用模糊逻辑对谐振速率传感器的非线性热偏置漂移进行补偿
本文主要研究谐振速率传感器的非线性热偏(零速率输出)漂移的补偿问题,这种漂移的产生有多种原因,包括制造公差、材料的不均匀性以及气缸不可避免的机械特性随温度的变化。利用模糊逻辑处理非线性的能力,在整个工作温度范围内用Takagi-Sugeno (TS)模糊模型来表示偏置的非线性。然后,利用模糊模型直接从原始RRS数据中减去估计输出,对非线性偏置漂移进行补偿。通过这样做,我们可以在整个工作温度范围内保证传感器的鲁棒性(抗温度变化)。
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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