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基于高精度曲面建模的物體表面形變監測
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西南科技大學(xué) 信息工程學(xué)院

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TP301

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國防科工局核應急項目(18zg6103); 四川省科技計劃資助(2018JY0522, 2016JY0242).


Object surface deformation monitoring using high accuracy surface modeling
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    摘要:

    道路、隧道、橋梁等物體表面形變監測是質(zhì)量安全保障的重要前提。針對其表面監測問(wèn)題,提出一種基于激光柵格化采樣和高精度曲面建模的物體表面監測方法。該方法對監測物體表面利用柵格化采樣進(jìn)行高精度曲面建模和插值,通過(guò)多項式空間插值估計監測點(diǎn)的真實(shí)值和曲面第一、二基本量,對物體表面沉降和曲率半徑參數變化角度進(jìn)行監測。為驗證該方法的有效性,在兩組不同復雜程度的已知曲面上隨機選取100個(gè)測試點(diǎn),針對采樣密度和插值密度分別進(jìn)行數值仿真實(shí)驗,并利用實(shí)物模型構建模擬形變實(shí)驗,進(jìn)而對測試點(diǎn)處的沉降變化和曲率半徑變化進(jìn)行監測。實(shí)驗結果表明:在仿真實(shí)驗中,高柵格化采樣密度和插值密度能夠大幅提高曲面重構精度,并降低物體表面不同復雜程度對監測精度的影響;在實(shí)物模擬形變實(shí)驗中,沉降測量精度可達98.41%,曲率半徑變化檢測精度可達81.82%。

    Abstract:

    Surface deformation monitoring of roads, tunnels, bridges, etc. is an important prerequisite for quality and safety. Aiming at the surface monitoring problem, we propose an object surface monitoring method based on laser rasterization sampling and high precision surface modeling. Utilizing rasterized sampling, the method can carry out high-precision surface modeling and interpolation on the surface of the monitored object. Then through the polynomial spatial interpolation method, the true value of the monitored points and the first and second basic quantities of the surface are estimated. Lastly, the surface settlement of the object and the change of the curvature radius parameters are monitored. In order to verify the effectiveness of the proposed method, we randomly selected 100 test points on two known surfaces of different complexity levels. On different conditions of the sampling density and interpolation density, we carried out numerical simulation experiments separately. Meanwhile, a simulated deformation experiment was constructed by a physical model. Then we monitored changes of settlement and curvature radius at the test points. The experimental results are as follow. In the simulation experiment, high rasterized sampling density and interpolation density can greatly improve surface reconstruction accuracy and reduce the impact of different complexity of the object surface on the monitoring accuracy. In the physical simulation deformation experiment, the settlement monitoring accuracy can reach 98.41%, and the curvature radius change monitoring accuracy can reach 81.82%.

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姚娟,張镠,王坤朋,唐齊鴻,劉忠仁.基于高精度曲面建模的物體表面形變監測計算機測量與控制[J].,2019,27(9):51-56.

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  • 收稿日期:2019-03-08
  • 最后修改日期:2019-04-22
  • 錄用日期:2019-03-29
  • 在線(xiàn)發(fā)布日期: 2019-09-24
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