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扭转特性测量系统中角度编码器的一种新误差模型及补偿策略

A New Error Model and Compensation Strategy of Angle Encoder in Torsional Characteristic Measurement System.

作者信息

Chen Bingkui, Peng Changyan, Huang Jian

机构信息

State Key Laboratory of Mechanical Transmission, Chongqing University, Chongqing 400044, China.

出版信息

Sensors (Basel). 2019 Aug 30;19(17):3772. doi: 10.3390/s19173772.

Abstract

For systems of measurement, geometric errors such as manufacturing and assembly errors could have a significant impact on the accuracy of the angle encoders of the system. In this study, an error model of angular measurement with geometric errors of a torsional characteristic measurement system was developed based on multibody system theory, the aim of which was to reveal the impact of geometric errors on angular measurement and to compensate the measurement error. According to the principle of spatial error transfer, the decomposition of geometric errors is illustrated and the error matrix of geometric errors is constructed by the Denavit-Hartenberg (DH) method. Subsequently, an error compensation function can be obtained and the impact of geometric error on angular measurement is discussed. Finally, we demonstrate by the experimental results of an ultra-autocollimator that the proposed error compensation method reduced the angular measurement error from 3.7% to 0.7%, which shows that the proposed error model can effectively predict the angular measurement error. In addition, it can be seen from the measurement results of the RV reducer that the error of the torsional characteristic measurement system decreased significantly.

摘要

对于测量系统而言,诸如制造和装配误差等几何误差可能会对系统角度编码器的精度产生重大影响。在本研究中,基于多体系统理论建立了具有扭转特性测量系统几何误差的角度测量误差模型,其目的是揭示几何误差对角度测量的影响并补偿测量误差。根据空间误差传递原理,阐述了几何误差的分解,并采用丹纳维特-哈滕贝格(DH)方法构建了几何误差的误差矩阵。随后,可得到误差补偿函数并讨论几何误差对角度测量的影响。最后,通过超自准直仪的实验结果表明,所提出的误差补偿方法将角度测量误差从3.7%降低到了0.7%,这表明所提出的误差模型能够有效地预测角度测量误差。此外,从RV减速器的测量结果可以看出,扭转特性测量系统的误差显著降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cee/6749345/5ce42e28a034/sensors-19-03772-g001.jpg

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