高级检索

    无人机高度与视口率定的快速量测

    Rapid measurement of UAV height and viewport calibration

    • 摘要: 随着民用小型无人机摄影测量技术的快速发展,水土保持监测已经逐步将大量的外业工作转向内业工作,试图探索一种简便高效又能保证一定精度的面积量测方法,以解决生产中获取数字正射影像(DOM)耗时长、存储量大的问题。利用大疆精灵4 Pro无人机在不同高程下进行地表观测,通过计算无人机飞行高度和照片的视口面积、视口长度和视口宽度关系,快速推求单幅低空航拍影像的比例尺,从而实现快速量测兴趣点长度和面积,省去生成DOM的环节。结果表明:无人机飞行高度与视口面积、视口长度、视口宽度均具有强相关性,飞行高度近似等于视口宽度;通过回归方程公式、参照标杆长度以及飞行高度近似等于视口宽度规律推求兴趣点长度信息并进行精度验证,数据准确率均在90%以上。表明快速量测面积的方法具有较高的可行性,研究结果为无人机摄影技术在水土保持监测领域提供可靠的方法借鉴。

       

      Abstract:
      Background With the rapid development of civil small drone photogrammetry technology, a large amount of field work has been gradually shifted to internal work in the field of soil and water conservation monitoring.Inthis article, a simple and efficient area measurement method with certain accuracy was explored based on UVA photography, aiming to solve the time-consuming problem to obtain digital orthophoto (DOM) in production with a relatively large storage capacity.
      Methods A surface soil storage site in a soil and water conservation monitoring project on a highway in Guangxi province was selected as the experiment area, and the DJI Phantom 4 Pro drone was used to conduct surface observations at different altitudes. The relationship between the viewport area, the viewport length and the viewport width were quickly determined the scale of a single low-altitude aerial image, so as to achieve the purpose of quickly measuring the length and area of points of interest, eliminating the need to generate DOM.
      Results The UAV flying height had a strong correlation with the viewport area, viewport length, and viewport width. R2 was both 0.999, and the flight height was approximately equal to the viewport width.Using the regression equation formula and according to the law of the benchmark length and the height was approximately equal to the viewport width, the length information of the point of interest was calculated and the accuracy was verified. The accuracy of the 3 methods was: Benchmarking method (94.03%)>law of flying height = viewport width (93.97%)> formula method (92.18%), the data accuracy rate is >90%.
      Conclusions The method of using UAV to quickly measure the area proposed in this paper is of high feasibility. In actual operation, it reduces working time and data redundancy, and thus improves work efficiency. It is also provide a feasible method reference to calibrate the related parameters of UAV. The research results provide a reliable method reference for UAV photography technology in the field of soil and water conservation monitoring.

       

    /

    返回文章
    返回