• Laser & Optoelectronics Progress
  • Vol. 58, Issue 21, 2112002 (2021)
Ziyue Zhao1, Yafei Wei2, Shuanggao Li2、*, Qi Zeng2, and Fang Chen2
Author Affiliations
  • 1AVIC Beijing Changcheng Institute of Metrology & Measurement, Beijing 100095, China
  • 2College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing , Jiangsu 210016, China
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    DOI: 10.3788/LOP202158.2112002 Cite this Article Set citation alerts
    Ziyue Zhao, Yafei Wei, Shuanggao Li, Qi Zeng, Fang Chen. Measurement Planning for Large Structural Parts Using Laser Radar[J]. Laser & Optoelectronics Progress, 2021, 58(21): 2112002 Copy Citation Text show less

    Abstract

    When a laser radar is used to measure large structural parts, it is often necessary to establish multiple measurement stations to construct a large measurement network, for which the station positions and the number of laser radars are key factors affecting the measurement results. A method for laser radar measurement planning of large structural parts is designed for large component contour measurements of large aircraft component. The measurement accuracy is considered as a constraint, and the method considers the number of measurement stations and the division results of measurement area as the evaluation target. Further, a measurement mathematical model reflects the characteristics of discrete information and establishes a discrete point method. Using the method of measurement station planning based on the region growing algorithm, the initial number and location of stations are determined. Moreover, measurement uncertainty optimization considering the division of the measurement area and results is adopted. Experimental results show that compared with experience-based manual measurement planning, the proposed method is more feasible and effective in performing large-area measurements with a small number of measurement area divisions and a reasonable number of measurement stations.
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    δi,j=arccossi,jsi,j+1/si,j×si,j+1
    ωi,j=δi,j/k=1jδi,k
    ni,j=si,j×si,j+1
    ni=k=1jωi,kni,k
    u12u1w1w12u22u2w2w22uj2ujwjwj2*abc=h1h2hj
    ck=1mi=1mvk,i
    rk=1mi=1mnk,i
    P=xyz=lcos αsin βlsin αsin βlcos β
    DP=σx2σxyσxzσyxσy2σyzσzσyzσz2
    DX=σα2000σβ2000σl2
    J=PX
    DP=JDXJT
    DX=σu2σv2σw2=lsin β2σα2000l2σβ2000σl2
    J=uvw=-sin αcos αcos βcos αsin βcos αsin αcos βsin αsin β0-sin βcos β
    U=σx2+σy2+σz2
    UA=k=1nUmaxkn
    Ziyue Zhao, Yafei Wei, Shuanggao Li, Qi Zeng, Fang Chen. Measurement Planning for Large Structural Parts Using Laser Radar[J]. Laser & Optoelectronics Progress, 2021, 58(21): 2112002
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