Design and Experiment of Laser Photogrammetric Instrument for Measuring Forest

被引:0
|
作者
Yang L. [1 ]
Feng Z. [1 ]
Fan G. [1 ]
Wu F. [2 ]
机构
[1] Precision Forestry Key Laboratory of Beijing, Beijing Forestry University, Beijing
[2] Academy of Forestry Inventory and Planning, State Forestry Administration, Beijing
来源
Feng, Zhongke (fengzhongke@126.com) | 2018年 / Chinese Society of Agricultural Machinery卷 / 49期
关键词
Android system; Diameter at breast height; Forest stand spatial structure; Laser photogrammetric instrument for measuring forest; Photogrammetry; Tree height;
D O I
10.6041/j.issn.1000-1298.2018.01.026
中图分类号
学科分类号
摘要
To solve the shortcomings of non-intelligent, non-integrated and low efficiency of traditional method for measuring diameter at breast height (DBH), tree height and forest stand spatial structure parameters, a laser photogrammetric instrument for measuring forest based on the principle of photogrammetry, image processing technology, sensor technology and forest measurement was designed. The instrument was composed of CCD sensor, laser, LED flashlight, self-developed PDA and shell. There were three modular procedures which were compiled in the Java language and developed in Android Studio 2.2 systems development environment. The three modules were DBH measurement, tree height measurement and forest stand spatial structure parameters measurement. These three functions were achieved by obtaining parameters such as dip angle, azimuth and image information. The experiment of measuring DBH, tree height with 21 trees as samples and measuring forest stand spatial structure parameters with 15 reference trees in a plot as samples. Compared with the traditional measurement method, the mean absolute value of the relative error of DBH measurement was 2.55%, the tree height was 2.82%, the uniform angle index was 2.50%, the dominance was 2.86% and the measurement of the mingling was consistent with the traditional measurement method. The measurement accuracy of the instrument can meet the requirements of forestry survey. The method of using the laser photogrammetric instrument for measuring forest to measure the forest stand spatial structure parameters can be done which only required one person. Compared with the traditional measurement method, this method saved a half of labor and 31% of the working time. The instrument had a good prospect in the field of forestry basic investigation and forest stand spatial structure. © 2018, Chinese Society of Agricultural Machinery. All right reserved.
引用
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页码:211 / 218
页数:7
相关论文
共 23 条
  • [11] Hui G., Zhao X., Zhao Z., Et al., Evaluatingtree species spatial diversity based on neighborhood relationships, Forest Science, 57, 4, pp. 292-300, (2011)
  • [12] Huang X., Feng Z., Obtainment of sample tree's DBH based on digital camera, Transactions of the Chinese Society for Agricultural Machinery, 46, 9, pp. 266-272, (2015)
  • [13] He C., Hong X., Liu K., Et al., An improved technique for non-destructive measurement of the stem volume of standing wood, Southern Forests, 78, 1, pp. 53-60, (2016)
  • [14] Gao X., Feng Z., Wang Z., Et al., Study on stem form index based on non-destructive precision measurement through electronic theodolite, Transactions of the Chinese Society for Agricultural Machinery, 46, 1, pp. 299-305, (2015)
  • [15] Cao Z., Gong Y., Feng Z., Et al., Error analysis on standing tree volume measurement by using electronic theodolites, Transactions of the Chinese Society for Agricultural Machinery, 46, 1, pp. 292-298, (2015)
  • [16] Wang Z., Feng Z., Yan F., Et al., Integrated indoor and field forest measurement by using total station, Journal of Northwest Forestry University, 28, 6, pp. 134-138, (2013)
  • [17] Huang X., Feng Z., Jie M., Et al., Developing and accuracy analysis of portable device for automatically measuring diameter at breast height and tree height, Transactions of the CSAE, 31, 18, pp. 92-99, (2015)
  • [18] Hou X., Tan Y., Qian H., Et al., DBH measurement method based on tree images taken by single-CCD camera mounted on theodolite, Application Research of Computers, 31, 4, pp. 1225-1228, (2014)
  • [19] Zhao F., Feng Z., Gao X., Et al., Measure method of tree height and volume using total station under canopy cover condition, Transactions of the CSAE, 30, 2, pp. 182-190, (2014)
  • [20] Qiu Z., Feng Z., Jiang J., Et al., Design and experiment of forest intelligent surveying and mapping instrument, Transactions of the Chinese Society for Agricultural Machinery, 48, 5, pp. 179-187, (2017)