Dynamic coast control of train movement with genetic algorithm


Autoria(s): Wong, K. K.; Ho, T. K.
Data(s)

2004

Resumo

The railway service is now the major transportation means in most of the countries around the world. With the increasing population and expanding commercial and industrial activities, a high quality of railway service is the most desirable. Train service usually varies with the population activities throughout a day and train coordination and service regulation are then expected to meet the daily passengers' demand. Dwell time control at stations and fixed coasting point in an inter-station run are the current practices to regulate train service in most metro railway systems. However, a flexible and efficient train control and operation is not always possible. To minimize energy consumption of train operation and make certain compromises on the train schedule, coast control is an economical approach to balance run-time and energy consumption in railway operation if time is not an important issue, particularly at off-peak hours. The capability to identify the starting point for coasting according to the current traffic conditions provides the necessary flexibility for train operation. This paper presents an application of genetic algorithms (GA) to search for the appropriate coasting point(s) and investigates the possible improvement on fitness of genes. Single and multiple coasting point control with simple GA are developed to attain the solutions and their corresponding train movement is examined. Further, a hierarchical genetic algorithm (HGA) is introduced here to identify the number of coasting points required according to the traffic conditions, and Minimum-Allele-Reserve-Keeper (MARK) is adopted as a genetic operator to achieve fitter solutions.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/38203/

Publicador

Taylor & Francis Ltd.

Relação

http://eprints.qut.edu.au/38203/1/c38203.pdf

DOI:10.1080/00207720412331203633

Wong, K. K. & Ho, T. K. (2004) Dynamic coast control of train movement with genetic algorithm. International Journal of Systems Science, 35(13-14), pp. 835-846.

Direitos

Copyright 2004 Taylor & Francis Ltd

This is an electronic version of an article published in the International Journal of Systems Science, which is available online at informaworldTM

Fonte

Faculty of Built Environment and Engineering; School of Engineering Systems

Palavras-Chave #010206 Operations Research #080105 Expert Systems #090507 Transport Engineering #Raiwlay operation #Coasting control #Train movement #Genetic algorithms
Tipo

Journal Article