中国光学, 2019, 12 (4): 741, 网络出版: 2019-09-10   

光栅精密位移测量技术发展综述

Development of grating-based precise displacement measurement technology
作者单位
1 长春理工大学 光电工程学院, 吉林 长春 130022
2 中国科学院 长春光学精密机械与物理研究所, 吉林 长春 130033
引用该论文

高旭, 李舒航, 马庆林, 陈伟. 光栅精密位移测量技术发展综述[J]. 中国光学, 2019, 12(4): 741.

GAO Xu, LI Shu-Hang, MA Qing-lin, CHEN Wei. Development of grating-based precise displacement measurement technology[J]. Chinese Optics, 2019, 12(4): 741.

参考文献

[1] 吕强,李文昊,巴音贺希格,等.基于衍射光栅的干涉式精密位移测量系统[J].中国光学,2017,10(1): 39-50.

    LV Q,LI W H,BAYANHESHIG,et al.. Interferometric precision displacement measurement system based on diffraction grating[J]. Chinese Optics,2017,10(1): 39-50.(in Chinese)

[2] 尚平.高精度衍射光栅干涉位移传感器及关键技术研究[D].合肥: 合肥工业大学,2012.

    SHANG P. Study on the key technology of high-resolution diffraction grating interferometric transducer of linear displacements[D]. Hefei: Hefei University of Technology,2012.(in Chinese)

[3] 刘焱,王烨.位移传感器的技术发展现状与发展趋势[J].自动化技术与应用,2013,32(6): 76-80, 101.

    LIU Y,WANG Y. Present status and trend of technical development of displacement sensor[J]. Techniques of Automation & Applications,2013,32(6): 76-80,101.(in Chinese)

[4] 江孝伟,武华.一维增透亚波长光栅的研究[J].发光学报,2017,38(2): 177-181

    JIANG X W,WU H. Research of 1D sub-wavelength grating anti-reflection[J]. Chinese Journal of Luminescence,2017,38(2): 177-181.(in Chinese)

[5] 刘桂香,林海,庞伟秀,等.掺杂Sm2O3的向列相液晶TEB30A光栅衍射特性研究[J].液晶与显示,2018,33(10): 851-856.

    LIU G X,LIN H,PANG W X,et al.. Diffraction characteristics of nematic liquid crystal TEB30A grating doped with Sm2O3[J]. Chinese Journal of Liquid Crystals and Displays,2018,33(10): 851-856.(in Chinese)

[6] 李文昊,姜岩秀,吴娜,等.极紫外波段变栅距光栅刻槽密度变化及光谱分辨能力分析[J].发光学报,2015,36(9): 1094-1099.

    LI W H,JIANG Y X,WU N,et al.. Analysis for groove density and spectral resolution of varied-line-space gratings in EUV spectrum[J]. Chinese Journal of Luminescence,2015,36(9): 1094-1099.(in Chinese)

[7] 张爽,朱万彬,李健,等.激光位移传感器传感探头微小型光学系统设计[J].中国光学,2018,11(6): 1001-1010.

    ZHANG SH,ZHU W Q,LI J,et al.. Design of micro-optical system for laser displacement sensor sensing probe[J]. Chinese Optics,2018,11(6): 1001-1010.(in Chinese)

[8] 李秋顺,向栋,陈超,等.单端面长周期光栅透射模式测量技术[J].发光学报,2017,38(8): 1090-1096.

    LI Q SH,XIANG D,CHEN CH,et al.. Transmission mode measurement technique of long period grating based on a single end face[J]. Chinese Journal of Luminescence,2017,38(8): 1090-1096.(in Chinese)

[9] 乔静,谢生,毛陆虹,等.吸收增强的光栅型金属-半导体-金属光电探测器的优化设计[J].发光学报,2018,39(3): 363-368.

    QIAO J,XIE SH,MAO L H,et al.. Optimum design of silicon-based metal-semiconductor-metal photodetector with subwavelength metal grating[J]. Chinese Journal of Luminescence,2018,39(3): 363-368.(in Chinese)

[10] 王国超,颜树华,高雷,等.光栅干涉位移测量技术发展综述[J].激光技术,2010,34(5): 661-664,716.

    WANG G CH,YAN SH H,GAO L,et al.. Development of displacement measurement technologies based on grating interferometry[J]. Laser Technology,2010,34(5): 661-664,716.(in Chinese)

[11] 李琳.基于光栅衍射光干涉的位移测量技术研究[D].长春: 中国科学院长春光学精密机械与物理研究所,2010.

    LI L. Displacement measuring technology based on diffractive light of grating interference[D]. Changchun: Changchun Institute of Optics, Fine Mechanics and Physics,Chinese Academy of Sciences,2010.(in Chinese)

[12] 楚兴春.纳米光栅干涉位移测量关键技术的研究[D].长沙: 国防科学技术大学,2005.

    CHU X CH. Research on key technologies of nanometer displacement measurement by grating interferometry[D]. Changsha: National University of Defense Technology,2005.(in Chinese)

[13] WEI CH H,YAN SH H,LIN C B,et al.. Compact grating displacement measurement system with a 3×3 coupler[J]. Chinese Optics Letters,2015,13(5): 051301.

[14] HSU C C,CHEN H,TSENG H Y,et al.. High displacement resolution encoder by using triple grating combination interferometer[J]. Optics & Laser Technology,2018,105: 221-228.

[15] 苏东风,续志军.基于反射式三光栅光学系统的金属光栅编码器[J].红外与激光工程,2008, 7(S1): 84-86.

    SU D F,XU ZH J. Metal grating encoder based on three-grating reflection optical system[J]. Infrared and Laser Engineering,2008,37(S1): 84-86.(in Chinese)

[16] HSIEH H L,PAN S W. Development of a grating-based interferometer for six-degree-of-freedom displacement and angle measurements[J]. Optics Express,2015,23(3): 2451-2465.

[17] 夏豪杰.高精度二维平面光栅测量系统及关键技术研究[D].合肥: 合肥工业大学, 2006.

    XIA H J. Research on precise 2-D plane grating measurement system and key technology[D]. Hefei: Hefei University of Technology,2006.(in Chinese)

[18] HSU C C,KAO M CH,HUANG K C,et al.. Reflection type displacement sensor with volume hologram for in-plane displacement measurement[C]. Proceedings of 2012 International Conference on Measurement,Information and Control,IEEE,2012: 13-16.

[19] LIN J,GUAN J,WEN F,et al.. High-resolution and wide range displacement measurement based on planar grating[J]. Optics Communications,2017,404: 132-138.

[20] WEI P P,LU X,QIAO D CH,et al.. Two-dimensional displacement measurement based on two parallel gratings[J]. Review of Scientific Instruments,2018,89(6): 065105.

[21] LEE J Y,JIANG G A. Displacement measurement using a wavelength-phase-shifting grating interferometer[J]. Optics Express,2013,21(21): 25553-25564.

[22] GUO D M,YU Y G,KONG L W,et al.. Self-mixing grating interferometer with dual laser diodes for sensing of 2-D dynamic displacement[J]. IEEE Journal of Quantum Electronics,2018,54(4): 7500106.

[23] LI H,ZHOU CH H,WANG SH Q,et al.. Two-dimensional gold matrix method for encoding two-dimensional optical arbitrary positions[J]. Optics Express,2018,26(10): 12742-12754.

[24] HSIEH H L,PAN S W. Three-degree-of-freedom displacement measurement using grating-based heterodyne interferometry[J]. Applied Optics,2013,52(27): 6840-6848.

[25] 孔令胜,王天聪,蔡盛,等.基于二维方孔光栅的平面三维显示[J].液晶与显示,2010,25(6): 919-924.

    KONG L SH,WANG T C,CAI SH,et al.. Flat-panel 3D display based on 2D square hole barrier[J]. Chinese Journal of Liquid Crystals and Displays,2010,25(6): 919-924.(in Chinese)

[26] LIU B SH,YUAN Y B,YIN ZH H. Research and design on orthogonal diffraction grating-based 3D nanometer displacement sensor[J]. Proceedings of SPIE,2017,10458: 1045818.

[27] XIAO F,ZHAO R,SUN P. Three-dimensional displacement measurement based on the combination of digital image correlation and optical flow[J]. Applied Optics,2016,55(29): 8207-8212.

[28] 王磊杰,张鸣,朱煜,等.超精密外差利特罗式光栅干涉仪位移测量系统[J].光学 精密工程,2017,25(12): 2975-2985.

    WANG L J,ZHANG M,ZHU Y,et al.. A displacement measurement system for ultra-precision heterodyne Littrow grating interferometer[J]. Opt. Precision Eng.,2017,25(12): 2975-2985.(in Chinese)

[29] 陈航.外差式光栅粗/细位移测量系统的研究[D].哈尔滨: 哈尔滨工业大学,2017.

    CHEN H. Research on heterodyne grating displacement measurement system with high/low displacement resolution[D]. Harbin: Harbin Institute of Technology,2017.(in Chinese)

[30] 彭东林,刘成康,谭为民.时空坐标转换理论与时栅位移传感器研究[J].仪器仪表学报,2000,21(4): 338-342.

    PENG D L,LIU CH K,TAN W M. Study on the theory of time-space coordinate transformation and the time grating displacement sensor[J]. Chinese Journal of Scientific Instrument,2000,21(4): 338-342.(in Chinese)

[31] HSU C C,CHEN H,CHIANG C W,et al.. Dual displacement resolution encoder by integrating single holographic grating sensor and heterodyne interferometry[J]. Optics Express,2017,25(24): 30189-30202.

[32] HSIEH H L,CHEN W. Heterodyne Wollaston laser encoder for measurement of in-plane displacement[J]. Optics Express,2016,24(8): 8693-8707.

[33] LEE J Y,LU M P,LIN K Y,et al.. Measurement of in-plane displacement by wavelength-modulated heterodyne speckle interferometry[J]. Applied Optics,2012,51(8): 1095-1100.

[34] 彭东林,付敏,陈锡侯,等.典型位移传感器分类研究与时栅传感器特点分析[J].机械工程学报,2018,54(10): 36-42.

    PENG D L,FU M,CHEN X H,et al.. Classification study on typical displacement sensors and analysis on the characteristics of time grating sensors[J]. Journal of Mechanical Engineering,2018,54(10): 36-42.(in Chinese)

[35] CHEN Z R,PU H J,LIU X K,et al.. A time-grating sensor for displacement measurement with long range and nanometer accuracy[J]. IEEE Transactions on Instrumentation and Measurement,2015,64(11): 3105-3115.

[36] 彭凯,于治成,刘小康,等.单排差动结构的新型纳米时栅位移传感器[J].仪器仪表学报,2017,38(3): 734-740.

    PENG K, YU ZH CH, LIU X K,et al.. Novel nanometer time-grating displacement sensor with single row differential structure[J]. Chinese Journal of Scientific Instrument,2017,38(3): 734-740.(in Chinese)

[37] LI M W,GENG H,WU Q N,et al.. Application of double metal/dielectric gratings in optical displacement detection[J]. Applied Optics,2018,57(13): 3438-3443.

[38] PU H J,LIU H ZH,LIU X K,et al.. A novel capacitive absolute positioning sensor based on time grating with nanometer resolution[J]. Mechanical Systems and Signal Processing,2018,104: 705-715.

[39] HILL K O,FUJII Y,JOHNSON D C,et al.. Photosensitivity in optical fiber waveguides: application to reflection filter fabrication[J]. Applied Physics Letters,1978,32(10): 647-649.

[40] 李丽.光纤光栅位移传感系统关键技术的研究[D].天津: 天津大学,2007.

    LI L. Study on key techniques of fiber Bragg grating displacement sensoring[D]. Tianjin: Tianjin University,2007.(in Chinese)

[41] LI T L,SHI CH Y,REN H L. A novel fiber Bragg grating displacement sensor with a sub-micrometer resolution[J]. IEEE Photonics Technology Letters,2017,29(14): 1199-1202.

[42] 谭跃刚,陈宇佳,李瑞亚,等.高精度弓型光纤光栅微位移传感器[J].光学 精密工程,2018,26(3): 556-564.

    TAN Y G,CHEN Y J,LI R Y,et al.. High-precision bow-shaped fiber Bragg grating micro-displacement sensors[J]. Opt. Precision Eng.,2018,26(3): 556-564.(in Chinese)

[43] 徐东升.一种新型光纤光栅局部位移计在小应变测量中的应用[J].岩土工程学报,2017,39(7): 1330-1335.

    X43D SH. New fiber Bragg grating sensor-based local displacement transducer for small strain measurements of soil specimens[J]. Chinese Journal of Geotechnical Engineering ,2007,39(7): 1330-1335.(in Chinese)

高旭, 李舒航, 马庆林, 陈伟. 光栅精密位移测量技术发展综述[J]. 中国光学, 2019, 12(4): 741. GAO Xu, LI Shu-Hang, MA Qing-lin, CHEN Wei. Development of grating-based precise displacement measurement technology[J]. Chinese Optics, 2019, 12(4): 741.

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