2017Transportation Research Record Journal of the Transportation Research BoardRequires access

Modeling Pedestrian Delays at Signalized Intersections as a Function of Crossing Directions and Moving Paths

Jing Zhao, Yue Liu

Open publisher page 5 citations

Abstract

Pedestrian delay is a key performance indicator for evaluating the level of service for pedestrians at signalized intersections. Although much is known about the pedestrian delay of a signalized crosswalk, the existing model in the Highway Capacity Manual 2010 cannot provide the necessary accuracy for estimating the pedestrian delay of the diagonal crossing (crossing to the diagonally opposite corner of the intersection in two stages) and the entire intersection. In this paper, a new pedestrian control delay model is proposed: the model considers the diagonal crossing and moving paths. The proposed model is validated on the basis of field measurements. The main factors affecting the pedestrian control delay during diagonal crossing are discussed. Results reveal that the proposed model is promising in increasing the estimation accuracy of the pedestrian control delay of the diagonal crossing and the entire intersection (approximately 20%). The delay of the diagonal crossing increases with an increase in the time gap of the green light between the two adjacent crosswalks and an increase in the green time length of the crosswalk.

About this research paper

What this paper is about

Pedestrian delay is a key performance indicator for evaluating the level of service for pedestrians at signalized intersections. Although much is known about the pedestrian delay of a signalized crosswalk, the existing model in the Highway Capacity Manual 2010 cannot provide the necessary accuracy for estimating the pedestrian delay of the diagonal crossing (crossing to the diagonally opposite corner of the intersection in two stages) and the entire intersection. In this paper, a new pedestrian control delay model is proposed: the model considers the diagonal crossing and moving paths. The proposed model is validated on the basis of field measurements. The main factors affecting the pedestrian control delay during diagonal crossing are discussed. Results reveal that the proposed model is promising in increasing the estimation accuracy of the pedestrian control delay of the diagonal crossing and the entire intersection (approximately 20%). The delay of the diagonal crossing increases with an increase in the time gap of the green light between the two adjacent crosswalks and an increase in the green time length of the crosswalk.

Why it matters

OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Pedestrian delay is a key performance indicator for evaluating the level of service for pedestrians at signalized intersections. Although much is known about the pedestrian delay of a signalized crosswalk, the existing model in the Highway Capacity Manual 2010 cannot provide the necessary accuracy for estimating the pedestrian delay of the diagonal crossing (crossing to the diagonally opposite corner of the intersection in two stages) and the entire intersection. In this paper, a new pedestrian control delay model is proposed: the model considers the diagonal crossing and moving paths. The proposed model is validated on the basis of field measurements. The main factors affecting the pedestrian control delay during diagonal crossing are discussed. Results reveal that the proposed model is promising in increasing the estimation accuracy of the pedestrian control delay of the diagonal crossing and the entire intersection (approximately 20%). The delay of the diagonal crossing increases with an increase in the time gap of the green light between the two adjacent crosswalks and an increase in the green time length of the crosswalk.

Key concepts: Schema crosswalk, Pedestrian, Diagonal, Intersection (aeronautics), Pedestrian crossing, Level crossing, Level of service, Computer science

Related papers

Back to paper searchBrowse research topicsOriginal source
Modeling Pedestrian Delays at Signalized Intersections as a Function of Crossing Directions and Moving Paths — Research Paper | ScholarLens