浏览全部资源
扫码关注微信
1. 哈尔滨工业大学 超精密光电仪器工程研究所,黑龙江 哈尔滨,中国,150080
2. 哈尔滨工业大学 光学工程博士后流动站,黑龙江 哈尔滨,150080
收稿日期:2016-05-31,
修回日期:2016-06-12,
纸质出版日期:2016-11-14
移动端阅览
朱凡, 谭欣然, 谭久彬等. 高分辨力与高输出稳定性自准直系统设计[J]. 光学精密工程, 2016,24(10s): 109-116
ZHU Fan, TAN Xin-ran, TAN Jiu-bin etc. Design of high resolution and output stability autocollimation system[J]. Editorial Office of Optics and Precision Engineering, 2016,24(10s): 109-116
朱凡, 谭欣然, 谭久彬等. 高分辨力与高输出稳定性自准直系统设计[J]. 光学精密工程, 2016,24(10s): 109-116 DOI: 10.3788/OPE.20162413.0109.
ZHU Fan, TAN Xin-ran, TAN Jiu-bin etc. Design of high resolution and output stability autocollimation system[J]. Editorial Office of Optics and Precision Engineering, 2016,24(10s): 109-116 DOI: 10.3788/OPE.20162413.0109.
为了实现高分辨力与高输出稳定性的微小角度测量,建立了一个光电自准直系统。该系统主要包括摄远物镜、光学放大以及漂移补偿单元。首先,对摄远物镜的短结构、长焦距特性进行研究,对该特性中的制约因素以及对结构参数变化的敏感程度进行分析,并应用光学放大提高自准直中图像位移检测的分辨力。然后,在高分辨力的基础上引入漂移补偿,利用合作靶标分离出漂移量参考光束,结合光束偏转单元对自准直过程中的漂移量进行闭环控制。最后,对该自准直系统的分辨力和稳定性进行了测试。实验结果表明:在±30"的测量范围内,自准直系统的有效分辨力优于0.000 5",两小时输出稳定性达到0.006",可以满足微小角度测量领域中的高分辨力与高输出稳定性的要求。
To achieve precise and stable measurement of micro angles
a photoelectric auto-collimation system comprising telephoto objective lens
optical amplifier and shift compensator was established. Firstly
the short structure and long-focus features of the telephoto objective were researched
involving the restrictions and the sensitivity to the variation of structure parameters. The optical amplifier can improved the resolution of image displacement in the auto-collimation system. Then
the drift compensation was introduced based on high resolution. The drift reference beam extracted by the cooperative target
combined with beam steering mechanism was used in the closed-loop control of the drift. Finally
the resolution and stability of the auto-collimation system were tested. The results show that the valid resolution is higher than 0.000 5" and the output stability in two hours reaches 0.006" within the ±30" measurement range
which can meet the requirements of high resolution and high output stability in the field of micro angle measurement.
KONYAKHIN A I, TIMOFEEV N A, KONYAKHIN A. Three-axis optic-electronic autocollimation system for the inspection of large-scale objects[J]. SPIE, 2013, 8788:87882C-87882C-8.
KONYAKHIN A I, KOPYLOVA V T, KONYAKHIN I A. Optic-electronic autocollimation sensor for measurement of the three-axis angular deformation of industry objects[J]. SPIE, 2012, 8439:84391N-84391N-7.
YANDAYAN T, GECKELER R D,SIEWERT F. Pushing the limits:latest developments in angle metrology for the inspection of ultra-precise synchrotron optics[J]. SPIE, 2014, 9206:92060F-92060F-15.
JUST A, KRAUSE M, WITTCKOPF R, et al.. Calibration of high-resolution electronic autocollimators against an angle comparator[J]. Metrologia, 2003, 40(5):288-294.
EHRET G, SCHULZ M, BAIER M, et al.. Optical measurement of absolute flatness with the deflectometric measurement systems at PTB[J]. Journal of Physics:Conference Series, 2013, 425(15):152016-152016-4.
GECKELER R D, JUST A, KRAUSE M, et al.. Autocollimators for deflectometry:Current status and future progress[J]. Nuclear Instruments & Methods in Physics Research Section A:Accelerators Spectrometers Detectors and Associated Equipment, 2010, 616(2-3):140-146.
SCHULZ M, EHRET G, KREN P. High accuracy flatness metrology within the european metrology research program[J]. Nuclear Instruments and Methods in Physics Research, 2012,710(710c):37-41.
QIAN S,TAKACS P. Wave front-splitting phase shift beam splitter for pencil beam interferometer[J]. Rev. Sci. Instrum., 2003, 74(11):4881-4884.
ZHU F, TAN J, CUI J.Beam splitting target reflector based compensation for angular drift of laser beam in laser autocollimation of measuring small angle deviations[J]. Rev. Sci. Instrum., 2013, 84(6), 065116-065116-8.
SUZUKI T, SASAKI O, GREIVENKAMP J E, et al.. Two-dimensional small-rotation-angle measurement using an imaging method[J]. Optical Engineering, 2006, 45(4):043604-1-7.
LEVITON D B. Ultrahigh resolution absolute Cartesian electronic autocollimator[J]. SPIE, 2003, 5190:468-475.
ZHU F, TAN J, CUI J.Common-path design criteria for laser datum based measurement of small angle deviations and laser autocollimation method in compliance with the criteria with high accuracy and stability[J]. Optics Express, 2013, 21(9):11391-11403.
0
浏览量
393
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构