Evidence Admission in Spatial Decision Models: Gating Layers Before Fusion in Municipal Seismic Screening

Seismic geospatial decision models can produce misleading outputs without rigorous input validation. Fusion conceals the defect: weight-sensitivity testing on an inadmissible layer reports stability rather than validity. This paper presents Evidence-Gated Screening (EGS), a four-gate framework. It tests computational provenance, applicability, decision-relevant signal, and input support before fusion. EGS audited six candidates for 1552 building footprints in Aabadiyeh, Lebanon: a construction-epoch proxy, two soil products, an exploratory Age-Soil Index, a Newmark displacement raster, and an Earthquake Risk Index. Only the proxy was conditionally admitted. Two interpreters validated it on a stratified probability sample of 216 buildings, giving binary accuracies of 0.833 (0.782–0.880) and 0.861 (0.815–0.907), with κ = 0.832 on the image evidence. The remaining candidates were rejected, including the risk index. Of 87,492 evaluable cells, 56.30% fell outside the stated critical-acceleration domain; raster-to-building transfer omitted 270 footprints. Gating returned a queue of 400 buildings and not the composite’s 303. Four products were assessed by two independent assessors, who agreed on 13 of 16 gates and on all four dispositions: two were conditionally admitted, two rejected. This indicates that EGS can screen out inadmissible inputs before fusion and support building inspection prioritization, but not vulnerability prediction without building-level validation.

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Publication Details

Journal
ISPRS International Journal of Geo-Information
Published
2026-09-17
DOI
https://doi.org/10.3390/ijgi15090425
Primary Topic
Seismic Performance and Analysis
Type
article
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article

Evidence Admission in Spatial Decision Models: Gating Layers Before Fusion in Municipal Seismic Screening

Amal Iaaly, Mervana Mograby
ISPRS International Journal of Geo-Information
Seismic Performance and Analysis
article

Evidence Admission in Spatial Decision Models: Gating Layers Before Fusion in Municipal Seismic Screening

Amal Iaaly, Mervana Mograby
article en

Abstract

Seismic geospatial decision models can produce misleading outputs without rigorous input validation. Fusion conceals the defect: weight-sensitivity testing on an inadmissible layer reports stability rather than validity. This paper presents Evidence-Gated Screening (EGS), a four-gate framework. It tests computational provenance, applicability, decision-relevant signal, and input support before fusion. EGS audited six candidates for 1552 building footprints in Aabadiyeh, Lebanon: a construction-epoch proxy, two soil products, an exploratory Age-Soil Index, a Newmark displacement raster, and an Earthquake Risk Index. Only the proxy was conditionally admitted. Two interpreters validated it on a stratified probability sample of 216 buildings, giving binary accuracies of 0.833 (0.782–0.880) and 0.861 (0.815–0.907), with κ = 0.832 on the image evidence. The remaining candidates were rejected, including the risk index. Of 87,492 evaluable cells, 56.30% fell outside the stated critical-acceleration domain; raster-to-building transfer omitted 270 footprints. Gating returned a queue of 400 buildings and not the composite’s 303. Four products were assessed by two independent assessors, who agreed on 13 of 16 gates and on all four dispositions: two were conditionally admitted, two rejected. This indicates that EGS can screen out inadmissible inputs before fusion and support building inspection prioritization, but not vulnerability prediction without building-level validation.

ISPRS International Journal of Geo-InformationVol. 15(9)
University of Balamand (LB)
Sustainable cities and communities
Openalex Percentile: Top 16%
Seismic Performance and Analysis
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Evidence Admission in Spatial Decision Models: Gating Layers Before Fusion in Municipal Seismic Screening — Amal Iaaly, Mervana Mograby · ISPRS International Journal of Geo-Information (2026) | TGRS Research Map | TGRS