Requisitos de accesibilidad de los servicios de transporte público inteligente |
En la Recomendación UIT-T Y.4211 se especifican los requisitos de accesibilidad de los servicios de transporte público inteligente. En el contexto de los servicios de transporte público, el concepto de accesibilidad se ha centrado principalmente en la eliminación de las barreras físicas, véanse los trenes y autobuses que facilitan el acceso de los usuarios en silla de ruedas mediante plataformas elevadoras. En los servicios de transporte público inteligente, la integración de la Internet de las cosas (IoT), con un diseño adecuado, puede mejorar la accesibilidad de los servicios de transporte público proporcionando información y facilitando el acceso físico. La IoT puede utilizarse para crear herramientas destinadas a personas con diversos tipos de discapacidad y necesidades específicas, ya sean físicas, visuales, auditivas o cognitivas. Para que los servicios de transporte inteligentes puedan proporcionar servicios accesibles de forma adecuada, es necesario acordar previamente la información que contendrán los perfiles de accesibilidad. Dichos perfiles de accesibilidad deben incluir básicamente información sobre las necesidades de accesibilidad de los usuarios en el momento que viajan en transporte público. |
|
Citation: |
https://handle.itu.int/11.1002/1000/14577 |
Series title: |
Y series: Global information infrastructure, Internet protocol aspects, next-generation networks, Internet of Things and smart cities Y.4000-Y.4999: Internet of things and smart cities and communities Y.4100-Y.4249: Requirements and use cases |
Approval date: |
2020-12-14 |
Provisional name: | Y.ACC-PTS |
Approval process: | AAP |
Status: |
In force |
Maintenance responsibility: |
ITU-T Study Group 20 |
Further details: |
Patent statement(s)
Development history
|
|
|
Ed. |
ITU-T Recommendation |
Status |
Summary |
Table of Contents |
Download |
1
|
Y.4211 (12/2020)
|
In force
|
here
|
here
|
here
|
|
ITU-T Supplement
|
Title
|
Status
|
Summary
|
Table of contents
|
Download
|
Y Suppl. 32 (07/2020)
|
ITU-T Y.4000 series – Smart sustainable cities - A guide for city leaders
|
In force
|
here
|
here
|
here
|
Y Suppl. 33 (07/2020)
|
ITU-T Y.4000 series – Smart sustainable cities - Master plan
|
In force
|
here
|
here
|
here
|
Y Suppl. 34 (07/2020)
|
ITU-T Y.4000 series – Smart sustainable cities - Setting the stage for stakeholders' engagement
|
In force
|
here
|
here
|
here
|
Y Suppl. 45 (09/2017)
|
ITU-T Y.4000-series - An overview of smart cities and communities and the role of information and communication technologies
|
In force
|
here
|
here
|
here
|
Y Suppl. 52 (12/2018)
|
Methodology for building digital capabilities during enterprises' digital transformation
|
In force
|
here
|
here
|
here
|
Y Suppl. 53 (12/2018)
|
ITU-T Y.4000-series – Internet of Things use cases
|
In force
|
here
|
here
|
here
|
Y Suppl. 54 (04/2019)
|
ITU-T Y.4000 series – Framework for home environment profiles and levels of IoT systems
|
In force
|
here
|
here
|
here
|
Y Suppl. 56 (12/2019)
|
ITU-T Y-series – Supplement on use cases of smart cities and communities
|
In force
|
here
|
here
|
here
|
Y Suppl. 58 (05/2021)
|
Internet of things and smart cities and communities standards roadmap
|
In force
|
here
|
here
|
here
|
Y Suppl. 62 (07/2020)
|
Overview of blockchain for supporting Internet of things and smart cities and communities in data processing and management aspects
|
In force
|
here
|
here
|
here
|
Y Suppl. 63 (07/2020)
|
Unlocking Internet of things with artificial intelligence
|
In force
|
here
|
here
|
here
|
Y Suppl. 68 (05/2021)
|
Framework for Internet of things ecosystem master plan
|
In force
|
here
|
here
|
here
|
Y Suppl. 69 (05/2021)
|
Web-based data model for Internet of things and smart city systems and services
|
In force
|
here
|
here
|
here
|
Y Suppl. 76 (09/2023)
|
ITU-T Y.4000-series – Use cases of Internet of things-based smart agriculture
|
In force
|
here
|
here
|
here
|
Y Suppl. 82 (07/2024)
|
Standardization gaps and roadmap for artificial intelligence and Internet of things in digital agriculture
|
In force
|
here
|
here
|
here
|
Y Suppl. 83 (07/2024)
|
Optimizing digital agriculture with best practices for integrating artificial intelligence and Internet of things
|
In force
|
here
|
here
|
here
|
Title |
Approved on |
Download |
U4SSC - City Science Application Framework
|
2019
|
here
|
U4SSC - Case study - Air quality management in Southern California, USA
|
2019
|
here
|
U4SSC - Case study - Smart Dubai Happiness Meter in Dubai, United Arab Emirates
|
2019
|
here
|
U4SSC - Case study - Crime prediction for more agile policing in cities - Rio de Janeiro, Brazil
|
2019
|
here
|
U4SSC - Case study - Data driven energy savings in the Hyperdome shopping centre in Queensland, Australia
|
2019
|
here
|
U4SSC - Case study - Fine dust filtration in Stuttgart, Germany
|
2019
|
here
|
U4SSC - Case study - Smart Dubai - Rashid - City Concierge
|
2019
|
here
|
U4SSC - Case study - Identifying the cascading effects on vital objects during flooding
|
2019
|
here
|
U4SSC - Case study - Unlocking the potential of trust-based AI for city science and smarter cities
|
2019
|
here
|
U4SSC - United 4 Smart Sustainable cities - Overview
|
2017
|
here
|
U4SSC - Collection Methodology for Key Performance Indicators for Smart Sustainable Cities
|
2017
|
here
|
Multiple radio access technologies
|
2012
|
here
|
|