DocumentCode
2514536
Title
Evaluation and optimization of bus route network in Wuhan China
Author
Ning Zhang ; Zhengdong Huang
Author_Institution
Sch. of Urban Design, Wuhan Univ., Wuhan, China
fYear
2011
fDate
22-22 Oct. 2011
Firstpage
140
Lastpage
148
Abstract
With the expansion of urban area, urban bus transit plays an increasing important role in urban transportation. Nowadays, factors for bus route network planning become increasingly complicated with the construction of rail transit in metropolises of China. The object of this research is to optimize bus network in Wuhan using a GIS-based framework to alleviate or solve the problems exposed from current existing bus routes in the city, such as reducing the route overlapping, enlarging the network coverage, and reducing the nonlinear coefficient. This research employs a method for multi-modal transit route design based on stops, which treats certain rail routes as restrictions. Genetic algorithm (GA) is applied to search for optimal combination of candidate routes. With the case of central area in Wuhan, a scenario has been developed for the short-term situation with No.1, 2 and 4 rail routes. A comparison is made between the existing and the optimized results. It has been found that our GIS-based optimization approach may generate more appropriate bus route network for the large city.
Keywords
genetic algorithms; geographic information systems; rail traffic; road traffic; traffic engineering computing; China; GIS-based framework; Wuhan; bus route network evaluation; bus route network optimization; bus route network planning; genetic algorithm; geographic information system; multimodal transit route design; network coverage; nonlinear coefficient; rail transit; route overlapping; urban transportation; GIS-based platform; bus route network optimization; bus routes evaluation; bus transit planning; existing good bus routes (EGBRs) extraction;
fLanguage
English
Publisher
iet
Conference_Titel
Advanced Forum on Transportation of China (AFTC 2011), 7th
Conference_Location
Beijing
Electronic_ISBN
978-1-84919-571-3
Type
conf
DOI
10.1049/cp.2011.1392
Filename
6232059
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