Microscopic Simulation Research on Signal Cycle Length of Mixed Traffic Considering Violation

ICICTA '10 Proceedings of the 2010 International Conference on Intelligent Computation Technology and Automation - Volume 02(2010)

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摘要
Mixed traffic is often mistakenly considered as the cause of poor traffic safety and low efficiency. Traditionally, traffic management department would extend the signal cycle length to decrease the start loss caused by frequent starts, and to satisfy the traffic demand of motor vehicles, without considering the demand of pedestrian and non-motorized vehicles. Simultaneously, calculation methods of signal cycle length commonly used currently focus on the balance between delay and capacity, with litter analysis for pedestrians and non-motorized vehicles. On the basis of the typical characteristic of mixed traffic, the calculation of cycle length should take the demand of pedestrians and non-motorized vehicles seriously. Traffic simulation software-VISSIM can be utilized to simulate the state of mixed traffic with the result of the optimized signal cycle length, 110s for the typical intersection. In according with typical mixed traffic intersections, the paper applies the survey data of pedestrians from three signalized intersections in Shanghai and non-motorized vehicles from another three signalized intersections, and establishes the survival curves of pedestrians and non-motorized vehicles with the Survival Analysis Model. Then based on the VISSIM simulation model, the paper studies the relationship among cycle length, average delay and capacity of all the traffic participants under different signal cycle length.
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关键词
microscopic simulation research,traffic management department,typical mixed traffic intersection,traffic simulation software-vissim,non-motorized vehicle,traffic participant,mixed traffic,cycle length,traffic demand,signal cycle length,poor traffic safety,computational modeling,transportation,simulation model,microscopy,survival analysis,automation,survey data,simulation,satisfiability,signal analysis,traffic management
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