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The adoption of grid transit networks in non-metropolitan contexts

机译:在非大都市环境中采用电网运输网络

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摘要

This paper deals with grid transit network schemes and their specific features: orthogonal main routes that do not overlap, increased transit frequency, and distance between bus stops in interchange areas to be optimized. So far, this solution has been successfully adopted in metropolitan areas with orthogonal urban shapes (as shown by the description in Section 2). The aim of this paper is to discuss the extension of such systems into cities with less than one million inhabitants. A method to evaluate the performance of these schemes is proposed, based on the reduction of travel times for users and on the decrease of travel costs for the transport agency, with the constraint of not reducing the overall capacity. With the support of a GIS-based model, the method is applied to the case study of Turin (Italy), showing that the introduction of the grid network results in an improvement of the service, with a reduction of 16 bus routes. Compared to the current condition, this grants a reduction of both operational costs (-687(sic)/peak hour and 232(sic)/off-peak hour, equal to - 0.7% and - 0.3%) and, mostly, travel times (636 h and 316 h saved by users during peak and off-peak hours, equal to - 2.4% and - 2.7%), thus confirming the potential usefulness of this system in non-metropolitan contexts characterized by orthogonal schemes, and giving local transport policy-makers an additional perspective.
机译:本文讨论了网格公交网络方案及其特定特征:不重叠的正交主干路线,增加的公交频率以及要优化的换乘区域公交车站之间的距离。到目前为止,该解决方案已成功应用于具有正交城市形状的大都市地区(如第2节中的说明所示)。本文的目的是讨论将此类系统扩展到人口少于一百万的城市。提出了一种基于减少用户出行时间和减少运输机构出行成本的方法来评估这些方案的性能,并且要限制总容量。在基于GIS的模型的支持下,该方法被应用于意大利都灵的案例研究,结果表明,引入网格网络可以改善服务质量,减少16条公交路线。与当前条件相比,这可以减少运营成本(-687(标准值)/高峰时间和232(标准)/非高峰时间,分别等于-0.7%和-0.3%),并且可以减少旅行时间(用户在高峰和非高峰时段分别节省了636小时和316小时,分别为-2.4%和-2.7%),从而证实了该系统在以正交方案为特征的非大都市环境中的潜在有用性,并提供了本地交通服务决策者的另一个视角。

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