INFLUENCE OF FLIGHT CONFIGURATION USED FOR LiDAR DATA COLLECTION ON INDIVIDUAL TREES DATA EXTRACTION IN FOREST PLANTATIONS

Authors

  • Mauricio Muller Lactec - Instituto de Tecnologia para o Desenvolvimento
  • Ana Paula Baungarten Kersting Lactec - Instituto de Tecnologia para o Desenvolvimento
  • Nelson Yoshihiro Nakajima UFPR - Universidade Federal do Paraná
  • Roberto Tuyoshi Hosokawa UFPR - Universidade Federal do Paraná
  • Nelson Carlos Rosot UFPR - Universidade Federal do Paraná

DOI:

https://doi.org/10.5380/rf.v44i2.34045

Keywords:

Airborne LiDAR, remote sensing, progressive densification, forest mensuration, operational parameters, tree height, volume.

Abstract

In the last decades, several studies have been conducted aiming to the extraction of forest variables from LiDAR data. Although such studies have indicated great potential, the high cost associated with LiDAR data acquisition process inhibits the technology to become an operational technique for forestry applications. The cost of a LiDAR survey, as for any other data collection techniques, is composed of fixed and variable costs. The variable portion, which can be optimized, is dependent, among other factors, on the number of flight hours. The flight time is mainly dependent on the flight configuration used for the survey. The objective of this paper is to investigate the impact of using different operational parameters on different species of forest plantations, to provide inputs for an adequate cost-benefit analysis. The different configurations are evaluated in terms of the number of individual trees automatically detected, individual height and volume, using the forest inventory as the reference data. The experiments have shown that compatible results are obtained using different configurations with flight time varying by a factor of 3.5 to 10 times. Also, for a given point density, preference should be given to the configuration based on a lower flying height.

KeywordsAirborne LiDAR; remote sensing; progressive densification; forest mensuration; operational parameters; tree height; volume.

Published

2014-01-13

How to Cite

Muller, M., Kersting, A. P. B., Nakajima, N. Y., Hosokawa, R. T., & Rosot, N. C. (2014). INFLUENCE OF FLIGHT CONFIGURATION USED FOR LiDAR DATA COLLECTION ON INDIVIDUAL TREES DATA EXTRACTION IN FOREST PLANTATIONS. Floresta, 44(2), 279–290. https://doi.org/10.5380/rf.v44i2.34045

Issue

Section

Artigos