Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Measurement of Forest Inventory Parameters with Apple iPad Pro and Integrated LiDAR Technology

作者:Christoph Gollob, Tim Ritter, Ralf Kraßnitzer, Andreas Tockner, Arne Nothdurft · 发表于:Remote Sensing · 年份:2021 · DOI:10.3390/rs13163129 · 被引用次数:180 · 研究领域:Remote Sensing and LiDAR Applications、Forest ecology and management、Forest Ecology and Biodiversity Studies

The estimation of single tree and complete stand information is one of the central tasks of forest inventory. In recent years, automatic algorithms have been successfully developed for the detection and measurement of trees with laser scanning technology. Nevertheless, most of the forest inventories are nowadays carried out with manual tree measurements using traditional instruments. This is due to the high investment costs for modern laser scanner equipment and, in particular, the time-consuming and incomplete nature of data acquisition with stationary terrestrial laser scanners. Traditionally, forest inventory data are collected through manual surveys with calipers or tapes. Practically, this is both labor and time-consuming. In 2020, Apple implemented a Light Detection and Ranging (LiDAR) sensor in the new Apple iPad Pro (4th Gen) and iPhone Pro 12. Since then, access to LiDAR-generated 3D point clouds has become possible with consumer-level devices. In this study, an Apple iPad Pro was tested to produce 3D point clouds, and its performance was compared with a personal laser scanning (PLS) approach to estimate individual tree parameters in different forest types and structures. Reference data were obtained by traditional measurements on 21 circular forest inventory sample plots with a 7 m radius. The tree mapping with the iPad showed a detection rate of 97.3% compared to 99.5% with the PLS scans for trees with a lower diameter at a breast height (dbh) threshold of 10 cm. T...