Overview
ISO/TS 5087-3:2026, Information technology - City data model - Part 3: Service level concepts for transport, specifies a standardized ontology for the transport domain within city data models. Developed by ISO, this technical specification builds upon foundational terminology and concepts from ISO/IEC 5087-1 (foundation level) and ISO/IEC 5087-2 (city level) to create a framework that enables the precise, unambiguous description and integration of transport-related data across diverse urban services and stakeholders.
This standard is designed for municipal information systems, urban planners, software developers, and any organization engaged in smart city projects, intelligent transport systems, or city-level data management. Its ontology-based approach addresses the challenges of semantic interoperability, allowing institutions to break down data silos and use city transport data in a consistent and coordinated manner.
Key Topics
- Transport Domain Ontology: Defines the key service-level concepts for transport, including core object classes, properties, and relationships necessary for representing various types of transport networks.
- Semantic Interoperability: Focuses on enabling data from multiple sources to be understood, combined, and validated with consistency.
- Components of Transport Networks:
- NetworkElement: Fundamental building block, representing any portion of a transport network, with unique identifiers and status characteristics.
- TransportNetwork: A collection of network elements, enabling representation at multiple levels of detail.
- TransportNode & Junction: Points within the network, including nodes and connection points.
- TravelledWay, TravelledWayLink, and TravelledWaySection: Represent continuous or aggregated paths, with properties for direction, connectivity, and operational strategies.
- TravelledWayLane & TravelledWaySegment: Specify lanes and segments for more granular representation.
- ScheduledCode: Encodes status information (e.g., open/closed) for network elements, relevant for city services and travelers.
- Formalization: Standardizes the classes and properties using consistent naming conventions, unique identifiers (IRIs), and formal restrictions, supporting both human understanding and machine readability.
- Pattern Specialization: Includes specialized patterns for road, rail, micromobility, pedestrian, and public transport networks, ensuring adaptability to various city contexts.
Applications
Implementing ISO/TS 5087-3:2026 offers substantial practical value for smart cities and digital transformation projects:
- Integrated City Services: Supports cross-departmental collaboration by providing a shared vocabulary and structure for transport data, reducing ambiguity and the risks of inconsistent interpretation.
- Decision Support & Planning: Facilitates advanced analytics, smart mobility applications, and scenario modelling by enabling reliable data sharing between city services such as transport, emergency response, utilities, and citizen engagement platforms.
- Intelligent Transport Systems (ITS): Enables the development of interoperable ITS applications that can access, utilize, and contribute to a shared pool of transport network data.
- Open Data Initiatives & Digital Twins: Contributes to the publication of open, linked transport data, supporting applications like urban digital twins and open government data platforms.
- Automated Validation & Quality Assurance: The clear, formal semantics allow for consistency analysis and automated detection of data inconsistencies, enhancing data quality and trust.
Related Standards
ISO/TS 5087-3:2026 is part of the ISO/IEC 5087 series, designed for comprehensive city data modelling:
- ISO/IEC 5087-1: Foundation level concepts, underlying classes, properties, and logical definitions for general data representation.
- ISO/IEC 5087-2: City-level concepts, addressing domain-neutral concepts common to all city services.
- ISO/TS 14812: Vocabulary for intelligent transport systems.
- ISO/IEC/IEEE 24765: Systems and software engineering vocabulary.
Aligning with these standards ensures robust, future-proof data management architectures and supports international best practices in information technology and city governance.
Keywords: ISO/TS 5087-3:2026, city data model, transport ontology, semantic interoperability, transport network, smart city, intelligent transport systems, data integration, urban mobility, open data, standardized transport data, city services