Towards Submission-Stage Validation in BIM-to-Cadastre Workflows: Assessing IDS 1.0 for 3D Condominium Registration in Morocco

BIM models submitted for three-dimensional condominium cadastral workflows must satisfy a minimum set of conditions before they can support downstream transformation and legal registration. Using a Moroccan condominium case study, this paper investigates how far Information Delivery Specification (IDS) 1.0 can support submission-stage admissibility checking. The analysis distinguishes four types of admissibility requirements: structural-semantic, relational, arithmetic, and geometric-external. IDS supports declarative structural-semantic checks directly. Relation-based checks are partially supported, and arithmetic and geometry-dependent conditions remain outside executable IDS 1.0 support. To examine this boundary empirically, an IDS-based validation set was derived from Moroccan condominium admissibility requirements and executed on an enriched IFC model of a residential building in Rabat. The results show that IDS is effective for structured metadata and selected relation checks, while arithmetic consistency, geometric validity, and the completeness of legally relevant spaces remain outside executable IDS 1.0 support. IDS is therefore best understood as a first-layer admissibility mechanism within a broader cadastral validation pipeline. Its practical value lies in providing standardized, machine-readable validation that can be executed automatically. Complementary methods, however, remain necessary for quantitative consistency, geometric validation, completeness assessment, and external institutional verification.

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Publication Details

Journal
ISPRS annals of the photogrammetry, remote sensing and spatial information sciences
Published
2026-09-28
DOI
https://doi.org/10.5194/isprs-annals-xii-4-w1-2026-235-2026
Primary Topic
3D Modeling in Geospatial Applications
Type
article
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article

Towards Submission-Stage Validation in BIM-to-Cadastre Workflows: Assessing IDS 1.0 for 3D Condominium Registration in Morocco

Rafika Hajji, Imane Meliana
ISPRS annals of the photogrammetry, remote sensing and spatial information sciences
3D Modeling in Geospatial Applications
article

Towards Submission-Stage Validation in BIM-to-Cadastre Workflows: Assessing IDS 1.0 for 3D Condominium Registration in Morocco

Rafika Hajji, Imane Meliana
article en

Abstract

BIM models submitted for three-dimensional condominium cadastral workflows must satisfy a minimum set of conditions before they can support downstream transformation and legal registration. Using a Moroccan condominium case study, this paper investigates how far Information Delivery Specification (IDS) 1.0 can support submission-stage admissibility checking. The analysis distinguishes four types of admissibility requirements: structural-semantic, relational, arithmetic, and geometric-external. IDS supports declarative structural-semantic checks directly. Relation-based checks are partially supported, and arithmetic and geometry-dependent conditions remain outside executable IDS 1.0 support. To examine this boundary empirically, an IDS-based validation set was derived from Moroccan condominium admissibility requirements and executed on an enriched IFC model of a residential building in Rabat. The results show that IDS is effective for structured metadata and selected relation checks, while arithmetic consistency, geometric validity, and the completeness of legally relevant spaces remain outside executable IDS 1.0 support. IDS is therefore best understood as a first-layer admissibility mechanism within a broader cadastral validation pipeline. Its practical value lies in providing standardized, machine-readable validation that can be executed automatically. Complementary methods, however, remain necessary for quantitative consistency, geometric validation, completeness assessment, and external institutional verification.

ISPRS annals of the photogrammetry, remote sensing and spatial information sciencesVol. XII-4/W1-2026(0)
Institut Agronomique et Vétérinaire Hassan II (MA)
Openalex Percentile: Top 15%
3D Modeling in Geospatial Applications
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