FLAIR-HUB -- Land-Cover mapping models (LC)
Collection
17 items
•
Updated
- Model architecture: convnextv2_base-unet
- Optimizer: AdamW (betas=[0.9, 0.999], weight_decay=0.01)
- Learning rate: 5e-5
- Scheduler: one_cycle_lr (warmup_fraction=0.2)
- Epochs: 150
- Batch size: 5
- Seed: 2025
- Early stopping: patience 20, monitor val_miou (mode=max)
- Class weights:
- default: 1.0
- masked classes: [clear cut, ligneous, mixed, other] → weight = 0
- Input channels:
- AERIAL_RGBI : [4,1,2]
- Input normalization (custom):
- AERIAL_RGBI:
mean: [106.59, 105.66, 111.35]
std: [39.78, 52.23, 45.62]
- Train patches: 152225
- Validation patches: 38175
- Test patches: 50700
Metric | Value |
---|---|
mIoU | 64.13% |
Overall Accuracy | 77.45% |
F-score | 76.88% |
Precision | 77.36% |
Recall | 76.89% |
Class | IoU (%) | F-score (%) | Precision (%) | Recall (%) |
---|---|---|---|---|
building | 84.15 | 91.39 | 91.15 | 91.64 |
greenhouse | 76.22 | 86.50 | 84.11 | 89.04 |
swimming pool | 60.03 | 75.02 | 76.08 | 73.99 |
impervious surface | 75.24 | 85.87 | 86.75 | 85.01 |
pervious surface | 56.17 | 71.94 | 69.87 | 74.14 |
bare soil | 63.02 | 77.31 | 74.19 | 80.71 |
water | 88.96 | 94.16 | 94.98 | 93.35 |
snow | 72.54 | 84.08 | 97.77 | 73.76 |
herbaceous vegetation | 54.22 | 70.31 | 71.67 | 69.01 |
agricultural land | 57.09 | 72.68 | 69.75 | 75.87 |
plowed land | 36.27 | 53.23 | 52.71 | 53.77 |
vineyard | 77.47 | 87.30 | 85.34 | 89.36 |
deciduous | 71.33 | 83.26 | 81.90 | 84.67 |
coniferous | 60.43 | 75.33 | 80.13 | 71.08 |
brushwood | 29.30 | 45.33 | 47.34 | 43.48 |
Aerial ROI
Inference ROI
BibTeX:
@article{ign2025flairhub,
doi = {10.48550/arXiv.2506.07080},
url = {https://arxiv.org/abs/2506.07080},
author = {Garioud, Anatol and Giordano, Sébastien and David, Nicolas and Gonthier, Nicolas},
title = {FLAIR-HUB: Large-scale Multimodal Dataset for Land Cover and Crop Mapping},
publisher = {arXiv},
year = {2025}
}
APA:
Anatol Garioud, Sébastien Giordano, Nicolas David, Nicolas Gonthier.
FLAIR-HUB: Large-scale Multimodal Dataset for Land Cover and Crop Mapping. (2025).
DOI: https://doi.org/10.48550/arXiv.2506.07080