About
Contact
Help
Sending publications
How to publish
Advanced Search
View Item 
  •   Home
  • Facultad de Ciencias Físicas y Matemáticas
  • Artículos de revistas
  • View Item
  •   Home
  • Facultad de Ciencias Físicas y Matemáticas
  • Artículos de revistas
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Browse byCommunities and CollectionsDateAuthorsTitlesSubjectsThis CollectionDateAuthorsTitlesSubjects

My Account

Login to my accountRegister
Biblioteca Digital - Universidad de Chile
Revistas Chilenas
Repositorios Latinoamericanos
Tesis LatinoAmericanas
Tesis chilenas
Related linksRegistry of Open Access RepositoriesOpenDOARGoogle scholarCOREBASE
My Account
Login to my accountRegister

Hybrid predictive control strategy for a public transport system with uncertain demand

Artículo
Thumbnail
Open/Download
IconSaez_Doris.pdf (488.1Kb)
Publication date
2012
Metadata
Show full item record
Cómo citar
Sáez Hueichapán, Doris
Cómo citar
Hybrid predictive control strategy for a public transport system with uncertain demand
.
Copiar
Cerrar

Author
  • Sáez Hueichapán, Doris;
  • Cortés, Cristián E.;
  • Milla Nanjarí, Freddy;
  • Núñez, Alfredo;
  • Tirachini Hernández, Alejandro;
  • Riquelme, Marcela;
Abstract
In this article, a hybrid predictive control (HPC) strategy is formulated for the real-time optimisation of a public transport system operation run using buses. For this problem, the hybrid predictive controller corresponds to the bus dispatcher, who dynamically provides the optimal control actions to the bus system to minimise users' total travel time (on-vehicle ride time plus waiting time at stops). The HPC framework includes a dynamic objective function and a predictive model of the bus system, written in discrete time, where events are triggered when a bus arrives at a bus stop. Upon these events, the HPC controller makes decisions based on two well-known real-time transit control actions, holding and expressing. Additionally, the uncertain passenger demand is included in the model as a disturbance and then predicted based on both offline and online information of passenger behaviour. The resulting optimisation problem of the HPC strategy at every event is Np-hard and needs an efficient algorithm to solve it in terms of computation time and accuracy. We chose an ad hoc implementation of a Genetic Algorithm that permits the proper management of the trade-off between these two aspects. For real-time implementation, the design of this HPC strategy considers newly available transport technology such as the availability of automatic passenger counters (APCs) and automatic vehicle location (AVL) devices. Illustrative simulations at 2, 5 and 10 steps ahead are conducted, and promising results showing the advantages of the real-time control schemes are reported and discussed.
General note
Artículo de publicación ISI
Patrocinador
ACT-32 Project 'Real-Time Intelligent Control for Integrated Transit Systems' ACT-32 Project Fondecyt Chile 1061261 Millennium Institute ICM: P-05-004-F CONICYT: FBO16
Identifier
URI: https://repositorio.uchile.cl/handle/2250/125666
DOI: DOI: 10.1080/18128601003615535
Quote Item
TRANSPORTMETRICA Volume: 8 Issue: 1 Pages: 61-86 Published: 2012
Collections
  • Artículos de revistas
xmlui.footer.title
31 participating institutions
More than 73,000 publications
More than 110,000 topics
More than 75,000 authors
Published in the repository
  • How to publish
  • Definitions
  • Copyright
  • Frequent questions
Documents
  • Dating Guide
  • Thesis authorization
  • Document authorization
  • How to prepare a thesis (PDF)
Services
  • Digital library
  • Chilean academic journals portal
  • Latin American Repository Network
  • Latin American theses
  • Chilean theses
Dirección de Servicios de Información y Bibliotecas (SISIB)
Universidad de Chile

© 2020 DSpace
  • Access my account