Real-Time Localization and Bimodal Point Pattern Analysis of Palms Using UAV Imagery
Kangning Cui, Wei Tang, Rongkun Zhu, Manqi Wang, Gregory D. Larsen,, Victor P. Pauca, Sarra Alqahtani, Fan Yang, David Segurado, Paul Fine, Jordan, Karubian, Raymond H. Chan, Robert J. Plemmons, Jean-Michel Morel, Miles R., Silman

TL;DR
This paper presents PalmDSNet, a deep learning framework for real-time detection and segmentation of palms in UAV imagery, combined with a bimodal algorithm to analyze palm spatial patterns in tropical forests.
Contribution
The study introduces PalmDSNet and a bimodal reproduction algorithm, advancing remote sensing analysis of palm distributions in complex tropical forest environments.
Findings
High accuracy in palm detection and segmentation
Effective simulation of palm spatial distribution patterns
Validated approach across diverse tropical forest sites
Abstract
Understanding the spatial distribution of palms within tropical forests is essential for effective ecological monitoring, conservation strategies, and the sustainable integration of natural forest products into local and global supply chains. However, the analysis of remotely sensed data in these environments faces significant challenges, such as overlapping palm and tree crowns, uneven shading across the canopy surface, and the heterogeneous nature of the forest landscapes, which often affect the performance of palm detection and segmentation algorithms. To overcome these issues, we introduce PalmDSNet, a deep learning framework for real-time detection, segmentation, and counting of canopy palms. Additionally, we employ a bimodal reproduction algorithm that simulates palm spatial propagation to further enhance the understanding of these point patterns using PalmDSNet's results. We used…
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Taxonomy
TopicsVehicle License Plate Recognition
MethodsSurface Nomral-based Spatial Propagation · Pathways Language Model
