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Multi-component gradient enhancement for accurate frost detection and quantification on leaf surfaces.

Scientific reports · 6 Oct 2025 · 10.1038/s41598-025-09131-7

Abstract

Accurate frost detection on leaf surfaces is critical for agricultural monitoring, yet existing methods struggle with segmentation errors caused by complex backgrounds (blurred, soil, weeds) and subtle frost-leaf texture differences. To address this, we propose MCGE-Frost, a multi-component gradient enhancement method that integrates color space analysis with gradient fusion theory. The algorithm extracts gradient features from individual color channels (HSV, Lab), applies adaptive weighting to enhance frost-leaf boundary contrast, and employs morphological filtering to suppress background noise. Experiments on leaf images demonstrate that MCGE-Frost achieves a total algorithmic error segmentation rate of 3.29%, significantly outperforming ExG (8.63%), OTSU (8.98%), and HSV (11.98%). The method reduces computational complexity by 40% compared to deep learning-based approaches while maintaining robustness across diverse backgrounds. MCGE-Frost achieves 0.8 s/image processing on GPU-accelerated systems, balancing accuracy and efficiency for edge deployment. Additionally, it improves the intelligence of frost quantification with minor manual calibration. This advancement supports real-time frost monitoring in precision agriculture, providing actionable insights for frost protection and crop management.

Plant phenotyping relevance

葉面の霜を画像から検出・定量する画像処理手法を開発し、既存手法との性能比較と精度評価を行っており、植物状態の取得方法が研究の中心である。

abstractwe propose MCGE-Frost, a multi-component gradient enhancement method that integrates color space analysis with gradient fusion theory.
abstractExperiments on leaf images demonstrate that MCGE-Frost achieves a total algorithmic error segmentation rate of 3.29%, significantly outperforming ExG (8.63%), OTSU (8.98%), and HSV (11.98%).
abstractAdditionally, it improves the intelligence of frost quantification with minor manual calibration.

Code and data availability

The paper's 120 frost leaf images and MCGE-Frost analysis are not publicly deposited; the Data availability statement says datasets are available from the corresponding author upon reasonable request, with no public URL or repository provided.

No evidence-backed public reproduction asset is currently recorded.

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