浏览全部资源
扫码关注微信
1. 合肥工业大学 仪器科学与光电工程学院,安徽 合肥,230009
2. 重庆理工大学 时栅传感器及先进检测技术重庆市重点实验室 重庆,400054
收稿日期:2014-08-05,
修回日期:2014-10-20,
纸质出版日期:2015-01-25
移动端阅览
高忠华, 陈锡侯, 彭东林. 时栅角位移传感器在线自标定系统[J]. 光学精密工程, 2015,23(1): 93-101
GAO Zhong-hua, CHEN Xi-hou, PENG Dong-lin. Online self-calibration system for time grating angular displacement sensor[J]. Editorial Office of Optics and Precision Engineering, 2015,23(1): 93-101
高忠华, 陈锡侯, 彭东林. 时栅角位移传感器在线自标定系统[J]. 光学精密工程, 2015,23(1): 93-101 DOI: 10.3788/OPE.20152301.0093.
GAO Zhong-hua, CHEN Xi-hou, PENG Dong-lin. Online self-calibration system for time grating angular displacement sensor[J]. Editorial Office of Optics and Precision Engineering, 2015,23(1): 93-101 DOI: 10.3788/OPE.20152301.0093.
为解决时栅角位移传感器在实际应用中的在线标定问题
提出了一种定角平移自标定方法并设计了相应的自标定系统.该方法首先把圆周封闭的自然基准转换成定角基准
在时栅内部建立了自标定基准.然后
根据傅里叶级数的性质
将定角基准平移到傅里叶变换的幅值和相位中
建立了测量值之差与误差之差的函数关系.通过对测量值之差进行傅里叶分析
重构了时栅角位移传感器的误差函数.最后
讨论了影响自标定精度的误差来源
并设计了传感器的零点纠错算法.为了检验自标定效果
利用激光干涉仪实验装置与自标定系统进行了对比试验.结果表明:定角平移自标定精度为1.9"
与理论计算的自标定误差(1.50.5)"的结论相符.提出的自标定方法在解决时栅自身标定基准的同时
满足了精密测量领域对时栅精度和可靠性的要求.
To implement the in-line self-calibration of a time grating angular displacement sensor in practical applications
a self-calibration method called Fixed Angle Shift (FAS) was presented and a self-calibration system was designed. Firstly
circle-closed natural base was shifted to a fixed angle base to be as the self-calibration base of time grating. According to properties of Fourier series
the relations between differences of measured values and errors were established by shifting the fixed angle base to amplitudes and phases in the Fourier transfer. Then
the error function was reconstructed based on the Fourier analysis for differences of measured values. Finally
the error sources effect on the calibration accuracy were discussed and a zero point correction algorithm was designed. To verify the results of self-calibration
self-calibration experiments were performed and compared with the proposed FAS system and a laser interferometer. Experimental results indicate that the accuracy of self-calibration with FAS method is 1.9"
which is well consistent with that of the theoretic calculation (1.50.5)". The method solves the self-calibration base of the time grating angular displacement sensor and satisfies
the requirements of precise measurement systems for high precise and high reliability.
刘小康,费业泰,彭东林,等. 时栅位移传感器智能化实现方法研究[J]. 仪器仪表学报,2008,29(6):1139-1142. LIU X K, FEI Y T, PENG D L, et al.. Research on intelligentization method for time grating displacement sensor [J]. Chinese Journal of Scientific Instrument, 2008, 29(6): 1139-1142. (in Chinese)
GAO ZH H. Error calibration system for time grating angular displacement sensor[C]. Proceedings of 2012 International Conference on Nanotechnology and Precision Engineering, Guilin, P.R. China: AMR, 2013:705-708.
彭东林,李彦,付敏,等. 用于极端和特殊条件下机械传动误差检测的寄生式时栅研究[J]. 仪器仪表学报,2013,34(2):359-365. PENG D L, LI Y, FU M, et al.. Study on parasitic time grating sensors used for mechanical transmission error measurement under harsh and special environment [J]. Chinese Journal of Scientific Instrument, 2013,34(2): 359-365. (in Chinese)
高忠华,彭东林. 直线时栅测量系统的误差研究[J]. 电子测量与仪器学报,2013,27(1):15-20. GAO ZH H, PENG D L.Study on error of linear time grating measurement system [J]. Journal of Electronic Measurement and Instrument, 2013,27(1):15-20. (in Chinese)
彭东林,刘小康,张兴红,等. 时栅位移传感器原理与发展历程[J]. 重庆理工大学学报:自然科学版,2010,24(10):40-45. PENG D L, LIU X K, ZHANG X H,et al.. The principle and development process of time grating sensor[J]. Journal of Chongqing University of Technology:Natural Science, 2010,24(10):40-45. (in Chinese)
夏桂锁,廖城,优燕军. 平行双关节坐标测量机的标定及不确定度评价[J]. 光学 精密工程,2014,22(5):1227-1234. XIA G S, LIAO CH, YOU Y J.Calibration and uncertainty evaluation of double parallel-joint coordinate measuring machine [J]. Opt. Precision Eng., 2014, 22(5): 1227-1234. (in Chinese)
解则晓,韩振华,高翔. 光笔式单目视觉测量系统的关键技术[J]. 中国光学,2013,6(5):780-787. XIE Z X, HAN ZH H, GAO X.Key technologies of monocular vision measurement system with light pen [J]. Chinese Optics, 2013, 6(5): 780-787. (in Chinese)
李醒飞,姚旺,赵新华,等. 多传感器测量系统的联合标定[J]. 光学 精密工程,2013,21(11):2877-2883. LI X F, YAO W, ZHAO X H, et al.. Joint calibration of multi-sensor measurement system [J]. Opt. Precision Eng., 2013,21(11):2877-2883.(in Chinese)
徐涛,李博,刘廷霞,等. 车载光电跟踪系统跟踪转台的初始标定[J]. 光学 精密工程,2013,21(3):782-789. XU T, LI B, LIU T X, et al.. Initial calibration of tracking turntable for vehicle-borne opto-electronic tracking system [J]. Opt. Precision Eng., 2013,21(3):782-789.(in Chinese)
GAO ZH H. Research and implimentation of control method for time grating rotary table with high precision[C]. Proceedings of 2012 International Conference on Future Optical Materials and Circuit Design, Xiamen, P.R. China: AMR, 2013:135-138.
高忠华,彭东林,陈锡侯. 时栅角位移传感器误差分离与建模方法研究[J]. 测控技术,2014,33(2):1-3,7. GAO ZH H, PENG D L, CHEN X H.Study on the method of error separation and modeling for time grating angular displacement sensor [J]. Measurement & Control Technology, 2014,33(2):1-3,7. (in Chinese)
GAO ZH H, ZHENG F Y, CHEN X H. Error analysis and method of calibration for linear time grating displacement sensor [J]. SPIE, 2013,8759:87594A-1-7.
杨继森,何健,彭东林,等. 基于STM32的时栅转台高精度自动标定系统设计[J]. 传感器与微系统,2014,33(3):107-109. YANG J S, HE J, PENG D L,et al.. Design of high precision automatic calibration system for time-grating turntable based on STM32 [J]. Transducer and Microsystem Technology, 2014,33(3):107-109. (in Chinese)
谢长文,范天泉,曹学东,等. 排列互比法用于测角时测量结果及测量误差的计算[J]. 计量学报,1998,19(3):189-193. XIE CH W, FAN T Q, CAO X D,et al.. Computing method of measuring results and errors of arrange mutual analogy method for angle measurement [J]. Acta Metrologica Sinica, 1998,19(3):189-193. (in Chinese)
裘祖荣,陈清清,李敬杰. 正多面棱体和多齿分度台角分度误差的互检[J]. 光电工程,2009,36(10):90-93. QIU Z R, CHEN Q Q, LI J J.Mutual check of angular deviation for regular polygonal prism and precise angle dividing table [J]. Opto-Electronic Engineering, 2009,36(10):90-93. (in Chinese)
ERNST A, JOHANNES H G. Angle measuring device:European, 0440833B1. 1994-06-08.
PROBST R, WITTEKOPF R, KRAUSE M. The new PTB angle comparator [J]. Measurement Science and Technology, 1998, 9(7):1059-1066.
WATANABE T., FUJIMOTO H, MASUDA T. Self-calibratable rotary encoder [J]. Journal of Physics: Conference Series, 2005, 54(1): 240-245.
LU X D, GRAETZ R, AMIN-SHAHIDI D, et al.. On-axis self-calibration of angle encoders [J]. CIRP: Annals-Manufacturing Technology, 2010, 59:529-534.
LU X D. Self-calibration method and apparatus for on-axis rotary encoders:USA, 7840372B2[P]. 2010-11-23.
0
浏览量
339
下载量
8
CSCD
关联资源
相关文章
相关作者
相关机构