DocumentCode :
3463404
Title :
Stochastic modeling and real-time estimation of incident effects on surface street traffic congestion
Author :
Sheu, Jiuh-Biing ; Chou, Yi-Hwa ; Chen, Allen
Author_Institution :
Dept of Transp., Warehousing & Logistics, Nat. Kaohsiung Univ. of Sci. & Technol., Taiwan
fYear :
2001
fDate :
2001
Firstpage :
669
Lastpage :
674
Abstract :
Real-time prediction of the effects of arterial incidents on traffic congestion is a significant factor in the development of advanced incident management systems. This paper explores a stochastic modeling approach to real-time prediction of incident effects on surface traffic congestion. To formulate the incident-induced traffic congestion problems for surface street arterial incident cases, inter-lane and intra-lane traffic variables are specified, followed by the development of a discrete-time, nonlinear stochastic model and a recursive estimation algorithm for the application of real-time prediction. The proposed method is tested with simulated data generated using the Paramics traffic simulator The preliminary tests indicated the capability of the proposed method in estimating incident effects on surface street traffic congestion in real time. We expect that this study can provide realtime incident-related traffic information with benefits not only for understanding the impact of incidents on non-recurrent traffic congestion of surface streets, but also for developing advanced incident-responsive traffic control and management technologies
Keywords :
delays; discrete time systems; real-time systems; stochastic processes; traffic information systems; Paramics traffic simulator; arterial incidents; discrete-time stochastic model; incident effects; incident management systems; nonlinear stochastic model; real-time estimation; real-time prediction; recursive estimation algorithm; simulated data; stochastic modeling approach; stochastic modelling; surface street traffic congestion; Civil engineering; Delay effects; Delay estimation; Mathematical model; Predictive models; Propagation delay; Shock waves; Stochastic processes; Testing; Traffic control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Transportation Systems, 2001. Proceedings. 2001 IEEE
Conference_Location :
Oakland, CA
Print_ISBN :
0-7803-7194-1
Type :
conf
DOI :
10.1109/ITSC.2001.948740
Filename :
948740
Link To Document :
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