DocumentCode :
1977710
Title :
Dynamic variable speed limit strategies based on traffic flow model for urban expressway
Author :
Shu-bin Li ; Wen-xiu Dang ; Bai-bai Fu
Author_Institution :
Public Security Dept., Shandong Police Coll., Jinan, China
fYear :
2015
fDate :
25-28 June 2015
Firstpage :
55
Lastpage :
63
Abstract :
The urban expressway network is an important part of the urban transport system which carries huge traffic pressure. It is also the key to the efficiency of the urban transport system. In this paper, the mesoscopic traffic flow models are improved by integrated with variable speed limits strategy to simulate the dynamic of vehicles on urban expressway network. The models include static queuing model, the velocity model and the vehicle movement model. Moreover the corresponding variable speed limits values can be obtained by proposed simulation method which can aid traffic managers to develop a network traffic flow control strategy. In the end, the elevated expressway network of Jinan city is used as a simulation example. We investigated the performance of the transport system with averaged density, speed and flow on link. We also analyzed the dynamic of the traffic system on expressway network at different demand level. The simulation results show that the proposed models and method are feasible and effective. The variable speed limits strategy can successfully alleviate the traffic congestion in some extent. The operational efficiency of the transportation system is greatly improved.
Keywords :
network theory (graphs); queueing theory; road traffic control; transportation; velocity control; Jinan city; dynamic variable speed limit strategies; elevated expressway network; mesoscopic traffic flow models; network traffic flow control strategy; operational efficiency; simulation method; static queuing model; traffic congestion; traffic flow model; traffic managers; traffic pressure; transportation system; urban expressway network; urban transport system; vehicle dynamics; vehicle movement model; Computational modeling; Load modeling; Numerical models; Safety; Vehicle dynamics; Vehicles; dynamic analyses; traffic model; traffic simulation; variable speed limits;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Transportation Information and Safety (ICTIS), 2015 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4799-8693-4
Type :
conf
DOI :
10.1109/ICTIS.2015.7232111
Filename :
7232111
Link To Document :
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