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基于物理水平基准的组合式高程测量方法研究

王清和 赵国柱 马国鹭 朱目成 宗建宇 王立斌 彭小武

王清和, 赵国柱, 马国鹭, 朱目成, 宗建宇, 王立斌, 彭小武. 基于物理水平基准的组合式高程测量方法研究[J]. 应用光学.
引用本文: 王清和, 赵国柱, 马国鹭, 朱目成, 宗建宇, 王立斌, 彭小武. 基于物理水平基准的组合式高程测量方法研究[J]. 应用光学.
WANG Qinghe, ZHAO Guozhu, MA Guolu, ZHU Mucheng, ZONG Jianyu, WANG Libin, PENG Xiaowu. Research on combined elevation measurement method based on physical horizontal reference[J]. Journal of Applied Optics.
Citation: WANG Qinghe, ZHAO Guozhu, MA Guolu, ZHU Mucheng, ZONG Jianyu, WANG Libin, PENG Xiaowu. Research on combined elevation measurement method based on physical horizontal reference[J]. Journal of Applied Optics.

基于物理水平基准的组合式高程测量方法研究

基金项目: 国家自然科学基金(61505169)
详细信息
    作者简介:

    王清和(1996—),男,硕士研究生,主要从事光学精密测量研究。E-mail:w_pessoa@163.com

    通讯作者:

    赵国柱(19XX—),男,博士,主要从事光学精密测量研究。E-mail:zhaoguozhu@cardc.cn

  • 中图分类号: TN206;TH741;TH744

Research on combined elevation measurement method based on physical horizontal reference

  • 摘要: 针对空间坐标点相对于测量基准的高程测量准确性问题,提出一种基于物理水平基准的组合式高程测量方法。利用激光三角测量原理及其测量光路的几何特性,搭建了物理水平基准的高程测量系统,在朗伯散射光场中,分析了倾角变化对激光光能质心偏移量的影响,建立了相应的误差修正模型,利用倾角传感器实现了高程测量的倾角误差补偿,自主研制了标定平台对本文提出的高程测量系统进行标定验证试验。结果表明:本文提出的组合式高程测量方法能够在500 mm测量量程下将重复性测量误差控制在±20 μm的波动范围内,相较于单一激光位移传感器测量方式,其组合式高程测量误差波动量大幅度降低,能够适应空间坐标点在任意姿态下的精准测量,有效改善激光位移传感器在高程测量领域的性能,使其测量结果更为真实有效。
  • 图  1  基于水平基准的高程测量原理图

    Fig.  1  Schematic diagram of elevation measurement based on horizontal reference

    图  2  激光束散射光场分析示意图

    Fig.  2  Schematic diagram of analysis for laser beam scattering light field

    图  3  高程测量方法的空间坐标矢量模型

    Fig.  3  Space coordinate vector model of elevation measurement method

    图  4  实验标定平台组成示意图

    Fig.  4  Schematic diagram of composition of experimental calibration platform

    图  5  标定实验测试原理图

    Fig.  5  Schematic diagram of calibration experiment test

    图  6  XY轴倾角变化对应的误差分布

    Fig.  6  Error distribution corresponding to inclination change of XY axis

    图  7  测量距离对测距设备误差的影响

    Fig.  7  Influence of measuring distance on error of distance measuring equipment

    图  8  重复性测试试验误差波动

    Fig.  8  Error fluctuation of repeatability test

    表  1  倾角实验数据记录

    Table  1  Record of inclination test data

    X&Y倾角变化测量差值修正后差值$ \alpha $倾角修正/mm$ \beta $倾角修正/mm
    $ \alpha $/°$ \beta $/°$ {Z_\alpha } $/mm$ {Z_\beta } $/mm$ Z_\alpha ' $/mm$ Z_\beta ' $/mm
    −2.454 2−3.547 829.582 629.511 429.604 629.527 9−0.022 0−0.016 5
    −1.438 2−2.704 329.247 429.604 029.271 729.619 1−0.024 2−0.015 1
    −0.466 3−1.680 829.411 728.955 129.437 828.968 9−0.026 1−0.013 8
    0.556 1−0.657 028.907 130.137 428.934 730.149 5−0.027 6−0.012 1
    1.533 50.336 928.867 829.786 928.895 729.798 2−0.027 9−0.011 3
    2.516 41.314 129.185 129.969 929.212 029.981 6−0.026 9−0.011 7
    3.518 02.314 029.605 929.084 829.631 229.0980−0.025 3−0.013 2
    下载: 导出CSV
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出版历程
  • 收稿日期:  2023-03-30
  • 修回日期:  2023-08-08
  • 网络出版日期:  2023-08-14

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