Impact of Station Design and Passengers Flow on Urban Rail Dwell Time: A Systemwide Analysis Using APC and AVL Data

Suryakant Buchunde, Saeid Saidi, Shervin Ataeian
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Abstract

In this paper, we investigated the impact on dwell time of station design, train load, and passenger flow, considering boarding fraction. We employed system-wide automated data sources including automatic passenger counting and automatic vehicle location data in the rail transit system in Calgary, Canada. Regression analyses were conducted to achieve accurate dwell time estimation by calculating passenger load per car, boarding, and alighting passengers per door, and also identifying the critical door with the highest demand. Observations for each critical door were divided based on the fraction of boarding passengers with respect to the sum of boarding and alighting. Six stations with distinct geometric designs were selected for comparison to assess their impact on dwell time. The results indicate that, for dominant boarding or alighting, a longer time is needed per passenger to alight or board, respectively. Our findings indicate that a station with a middle platform and two entrances positioned in the middle performed better in terms of dwell time in the case of alighting-dominant and mixed passenger flow. For stations experiencing boarding-dominant passenger flows, side platforms with multiple entrances at the ends and middle outperformed. Narrower platforms experienced significantly longer dwell times than other selected stations under similar demand. While the conclusion about the station design may not be generic, the proposed model provides a consistent and adaptable approach to study the impact of station design and passenger flows on urban rail dwell times, facilitating better-informed decision-making for station design or modification and enhancement of the overall rail system performance.
车站设计和乘客流量对城市轨道交通停留时间的影响:利用 APC 和 AVL 数据进行的全系统分析
在本文中,我们研究了车站设计、列车载荷和乘客流量对停留时间的影响,并考虑了上车人数。我们在加拿大卡尔加里的轨道交通系统中采用了全系统自动数据源,包括乘客自动计数和车辆自动定位数据。我们进行了回归分析,通过计算每节车厢的载客量、每个车门的上车和下车乘客人数,以及识别需求量最大的关键车门,来实现精确的停留时间估算。每个关键车门的观测值根据上车乘客占上车和下车乘客总和的比例进行划分。我们选择了六个具有不同几何设计的车站进行比较,以评估它们对停留时间的影响。结果表明,在上车或下车人数占优势的情况下,每位乘客下车或上车分别需要更长的时间。我们的研究结果表明,在下车客流占主导地位和混合客流的情况下,中间有一个站台、两个出入口位于中间的车站在停留时间方面表现更好。对于以上车客流为主的车站,两端和中间有多个出入口的侧式月台表现更好。在需求相似的情况下,较窄站台的停留时间明显长于其他选定车站。虽然关于车站设计的结论可能并不通用,但所提出的模型为研究车站设计和客流对城市轨道交通停留时间的影响提供了一种一致且可调整的方法,有助于在车站设计或改造方面做出更明智的决策,并提高整个轨道交通系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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