融合InSAR形变速率、后向散射变化与DEM坡度综合加权评分,双门限提取疑似滑坡连通域并矢量化分级(high/medium/low),输出滑坡GeoJSON、形变速率/风险评分GeoTIFF与风险汇总JSON。SAR landslide detection fusing InSAR deformation, backscatter change and slope.
Documents
Geoskill: Landslide Susceptibility Assessment
Try itIntegrate terrain, geology, rainfall, land cover, roads, and historical landslide data to produce interpretable susceptibility zoning with spatial cross-validation.
What it does
Integrate terrain, geology, rainfall, land cover, roads, and historical landslide data to produce interpretable susceptibility zoning with spatial cross-validation.
The skill document
Landslide Susceptibility Assessment
Integrates terrain, geology, rainfall, land cover, roads, and historical landslide data to produce interpretable susceptibility zoning with spatial cross-validation.
Trigger
Use when the user wants to:
- Produce a landslide susceptibility map for a region
- Compare statistical/ML models for landslide prediction
- Evaluate factor contributions to landslide susceptibility
- Generate susceptibility zoning with uncertainty estimates
- Validate landslide models with spatial cross-validation
CLI Usage
# Synthetic demo mode (no input files needed)
python scripts/landslide_susceptibility.py --output-dir ./ls-output
# With custom model
python scripts/landslide_susceptibility.py --model random_forest --output-dir ./ls-output
# With custom parameters
python scripts/landslide_susceptibility.py \
--model logistic_regression \
--negative-sampling buffer \
--cv-block-size 20 \
--n-folds 5 \
--class-schema five_class \
--output-dir ./ls-output
# With custom factor config
python scripts/landslide_susceptibility.py \
--factor-config ./my-factor-config.json \
--output-dir ./ls-output
Data Download
This skill can auto-fetch a DEM (Copernicus GLO-30, 30 m) from the Microsoft
Planetary Computer when given a bounding box + date range. The DEM is saved to
/downloaded/ and the output-manifest.json will record the
collection, bbox, and fetch timestamp. (The landslide inventory itself is
not auto-downloaded — supply it via --landslide-inventory.)
# Fetch a DEM for the Beijing area and run the synthetic pipeline
python scripts/landslide_susceptibility.py \
--bbox 116,39,117,40 \
--date-range 2024-01-01,2024-12-31 \
--output-dir ./ls-output
# Or via an AOI polygon file
python scripts/landslide_susceptibility.py \
--aoi-file ./aoi.geojson \
--output-dir ./ls-output
The PYTHONPATH must include the parent of _geoskill_data_fetcher/
(usually the same directory the 50 skills live in). Set it once:
export PYTHONPATH="/path/to/行业Skill创意-20260727"
Parameters
| Parameter | Default | Description |
|---|---|---|
--landslide-inventory | None | Path to landslide inventory (GeoJSON/Shapefile) |
--factor-config | None | Path to factor configuration JSON (default: references/factor_config.json) |
--model | logistic_regression | Model type: logistic_regression, random_forest, slope_baseline |
--negative-sampling | buffer | Negative sampling strategy: random, buffer, spatial_block |
--cv-block-size | 20 | Spatial CV block size in pixels |
--n-folds | 5 | Number of CV folds |
--class-schema | five_class | Classification schema: five_class, four_class |
--output-dir | ./ls-output | Output directory |
Output
| File | Description |
|---|---|
susceptibility.tif | Susceptibility probability map (0-1) |
susceptibility_zones.geojson | Susceptibility zone polygons |
model_metrics.json | Comprehensive model metrics with spatial CV results |
factor_importance.csv | Factor importance rankings |
model_card.json | Model card with limitations and metadata |
request.json | Analysis request metadata |
dataset-manifest.json | Dataset inventory |
output-manifest.json | Output file inventory |
qa.json | Quality assurance checks |
Key Algorithms
Spatial Block Cross-Validation
Divides the AOI into spatial blocks. Each fold uses distinct geographic blocks for validation, preventing spatial autocorrelation from inflating accuracy metrics. Block size should match the spatial autocorrelation range.
Collinearity Check (VIF)
Computes Variance Inflation Factor for each factor. Factors with VIF > 5 are flagged as potentially collinear. High correlation pairs (|r| > 0.8) are reported.
Negative Sampling
Three strategies available:
- random: Uniform random sampling across AOI
- buffer: Samples drawn outside buffer zones around known landslides
- spatial_block: Stratified sampling across spatial blocks
Model Types
- logistic_regression: Interpretable linear model with probability output
- random_forest: Ensemble of decision trees with permutation importance
- slope_baseline: Simple slope-threshold baseline for comparison
Susceptibility Classification
Five-class: Very low (<0.2), Low (0.2-0.4), Moderate (0.4-0.6), High (0.6-0.8), Very high (>0.8)
Exit Codes
| Code | Meaning |
|---|---|
| 0 | Success |
| 2 | Argument error |
| 3 | Dependency missing |
| 6 | Data validation failure |
| 7 | Processing failure |
Important Limitations
- Output is susceptibility (relative likelihood), NOT temporal probability or risk
- Requires trigger probability and exposure data for risk assessment
- Model accuracy depends on landslide inventory completeness
- Spatial transferability not guaranteed
- Not for engineering safety decisions without expert review
References
- Fell, R., et al. (2008). Guidelines for landslide susceptibility, hazard and risk zoning for land-use planning.
- Reichenbach, P., et al. (2018). A review of statistically-based landslide susceptibility models.
- Budimir, M.E.A., et al. (2015). A systematic review of landslide probability zonation.
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Multi-hazard probability times asset value times vulnerability curves to compute expected loss for insurance risk mapping
Render 3D terrain from DEM and imagery with vertical exaggeration and an HTML viewer
Multi-source DEM downloads / 多源 DEM 下载