• Optoelectronics Letters
  • Vol. 18, Issue 2, 91 (2022)
Yu LIU1, Yan ZHEN1, Linyi XIE1, Wei WANG2, Jiawen YANG1, and Renpu LI1、*
Author Affiliations
  • 1Chongqing Engineering Research Center of Intelligent Sensing Technology and Microsystem, Chongqing University of Post and Telecommunications, Chongqing 400065, China
  • 2School of Biology, Chongqing University of Posts and Telecommunications, Chongqing 400065, China
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    DOI: 10.1007/s11801-022-1114-x Cite this Article
    LIU Yu, ZHEN Yan, XIE Linyi, WANG Wei, YANG Jiawen, LI Renpu. Roll angle of autocollimator measurement method based on hollow cube corner reflector[J]. Optoelectronics Letters, 2022, 18(2): 91 Copy Citation Text show less
    References

    [1] GAO W, KIM S W, BOSSE H, et al. Measurement technologies for precision positioning[J]. CIRP annals, 2015, 64(2):773-796.

    [2] GILLMER S R, YU X Z, WANG C, et al. Robust high-dynamic-range optical roll sensing[J]. Optics letters, 2015, 40(11):2497-2500.

    [3] ZHU F, TAN J B, CUI J W. 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.

    [4] D'AMBROSIO V, SPAGNOLO N, DEL RE L, et al. Photonic polarization gears for ultra-sensitive angular measurements[J]. Nature communications, 2013, 4(1): 222-229.

    [5] CUI C X, FENG Q B, ZHANG B, et al. System for simultaneously measuring 6DOF geometric motion errors using a polarization maintaining fiber-coupled dual-frequency laser[J]. Optics express, 2016, 24(6): 6735-6748.

    [6] SERGEEV S A, MESHALKIN A Y, IOVU M S. Diffraction structures formed by two crossed superimposed diffraction gratings[J]. Surface engineering and applied electrochemistry, 2021, 57(2):207-216.

    [7] HSU C C, CHEN H, TSENG H Y, et al. High displacement resolution encoder by using triple grating combination interferometer[J]. Optics and laser technology, 2018, 105:221-228.

    [8] HUANG J H, WANG Z, GAO J M, et al. Modeling and analysis of phase fluctuation in a high-precision roll angle measurement based on a heterodyne interferometer[J]. Sensors, 2016, 16(8):1214.

    [9] GECKELER R D, KRANZ O, JUST A, et al. A novel approach for extending autocollimator calibration from plane to spatial angles[J]. Advanced optical technologies, 2012, 1(6):427-439.

    [10] REN W R, CUI J W, TAN J B. A novel enhanced roll-angle measurement system based on a transmission grating autocollimator[J]. IEEE access, 2019, 7: 120929-120936.

    [11] ZHAI Y S, FENG Q B, ZHANG B. A simple roll measurement method based on a rectangular-prism[J]. Optics and laser technology, 2011, 44(4):839-843.

    [12] QI J Y, WANG Z, HUANG J H, et al. Heterodyne interferometer with two parallel-polarized input beams for high-resolution roll angle measurement[J]. Optics express, 2019, 27(10):13820-13830.

    [13] CAI Y D, YANG B H, FAN K C. Robust roll angular error measurement system for precision machines[J]. Optics express, 2019, 27(6):8027-8036.

    [14] REN W R, CUI J W, TAN J B. Parallel beam generation method for a high-precision roll angle measurement with a long working distance[J]. Optics express, 2020, 28(23):34489-34500.

    [15] LI R P, ZHEN Y, DI K, et al. Three-degree-of-freedom autocollimator with large angle-measurement range[J]. Measurement science and technology, 2021, 32(11): 115005.

    LIU Yu, ZHEN Yan, XIE Linyi, WANG Wei, YANG Jiawen, LI Renpu. Roll angle of autocollimator measurement method based on hollow cube corner reflector[J]. Optoelectronics Letters, 2022, 18(2): 91
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