Volume Estimation of Stem Segments Based on a Tetrahedron Model Using Terrestrial Laser Scanning Data

Author:

You Lei1234ORCID,Chang Xiaosa12,Sun Yian12,Pang Yong5ORCID,Feng Yan12,Song Xinyu6ORCID

Affiliation:

1. School of Computer and Information Technology, Xinyang Normal University, Xinyang 464000, China

2. Henan Engineering Research Center of Internet of Things and Smart Security, Xinyang 464000, China

3. Henan Dabieshan National Field Observation and Research Station of Forest Ecosystem, Zhengzhou 450046, China

4. Xinyang Academy of Ecological Research, Xinyang 464000, China

5. Institute of Forest Resources Information Techniques, Chinese Academy of Forestry, Beijing 100091, China

6. School of Mathematics and Statistics, Xinyang Normal University, Xinyang 464000, China

Abstract

Stem volume is a very important parameter in forestry inventory and carbon storage. The stem volume estimated by most existing methods deviates from its true value because the irregularity of the stem is usually overlooked. In this study, we propose a stem segment volume estimation based on the tetrahedron model using TLS data. First, the initial stem segment surface model, including the lower, upper, and outer triangular surface models, was gradually reconstructed. Next, the outer surface model was subdivided based on the edge subdivision. Then, a closed triangular surface model without self-intersection was obtained. Afterward, a tetrahedron model of the stem segment was generated using TetGen software (Version 1.6.0) for the triangular surface model. Finally, the stem segment volume was calculated by summing the volumes of all the tetrahedrons in the tetrahedron model. An experiment with 76 stem segments from different tree species with different parameters showed that the reconstructed stem segment surface model effectively reflected the geometrical features of the stem segment surface. Compared to the volume based on the simulated sectional measurement, the MAPE of the volume based on the tetrahedron model was 2.12%. The results demonstrated the validity of the presented method for stem surface reconstruction and stem volume estimation, and the volume based on the tetrahedron model was closer to the true value than that based on the sectional measurement.

Funder

National Natural Science Foundation of China

Foundation for Distinguished Young Talents in Higher Education of Henan

Xinyang Academy of Ecological Research Open Foundation

Nanhu Scholars Program for Young Scholars of XYNU

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

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