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TreeDGS: Aerial Gaussian Splatting for Distant DBH Measurement

Remote Sensing · 11 Mar 2026 · 10.3390/rs18060867

Abstract

Aerial remote sensing efficiently surveys large areas, but accurate direct object-level measurement remains difficult in complex natural scenes. Advancements in 3D computer vision, particularly radiance field representations such as NeRF and 3D Gaussian splatting, can improve reconstruction fidelity from posed imagery. Nevertheless, direct aerial measurement of important attributes like tree diameter at breast height (DBH) remains challenging. Trunks in aerial forest scans are distant and sparsely observed in image views; at typical operating altitudes, stems may span only a few pixels. With these constraints, conventional reconstruction methods have inaccurate breast-height trunk geometry. TreeDGS is an aerial image reconstruction method that uses 3D Gaussian splatting as a continuous scene representation for trunk measurement. After SfM–MVS initialization and Gaussian optimization, we extract a dense point set from the Gaussian field using RaDe-GS’s depth-aware cumulative-opacity integration and associate each sample with a multi-view opacity reliability score. Then, we isolate trunk points and estimate DBH using opacity-weighted solid-circle fitting. Evaluated on 10 plots with field-measured DBH, TreeDGS reaches 4.79 cm RMSE (about 2.6 pixels at this GSD) and outperforms a LiDAR baseline (7.66 cm RMSE). This shows that TreeDGS can enable accurate, low-cost aerial DBH measurement.

Plant phenotyping relevance

樹木の胸高直径(DBH)という植物形態形質を、航空画像から3D再構成と信頼度重み付き推定で測定する手法を開発・検証しており、フェノタイピング手法が中心である。

abstractTreeDGS is an aerial image reconstruction method that uses 3D Gaussian splatting as a continuous scene representation for trunk measurement.
abstractThen, we isolate trunk points and estimate DBH using opacity-weighted solid-circle fitting.
abstractEvaluated on 10 plots with field-measured DBH, TreeDGS reaches 4.79 cm RMSE

Code and data availability

The paper's UAV RGB imagery, field DBH measurements, and TreeDGS pipeline are not publicly deposited. The Data Availability statement only offers contact with the corresponding author. The only URLs present (openMVS, Hesai XT-32, Inertial Labs RESEPI datasheet) are cited third-party tools/sensor specs, not paper assets

No evidence-backed public reproduction asset is currently recorded.

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