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Modelling walking and cycling accessibility and mobility The effect of network configuration and occupancy on spatial dynamics of active mobility

机译:对步行和骑自行车的可达性和移动性进行建模网络配置和占用率对主动移动性空间动态的影响

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Purpose - The most sustainable forms of urban mobility are walking and cycling. These modes of transportation are the most environmental friendly, the most economically viable and the most socially inclusive and engaging modes of urban transportation. To measure and compare the effectiveness of alternative pedestrianization or cycling infrastructure plans, the authors need to measure the potential flows of pedestrians and cyclists. The paper aims to discuss this issue. Design/methodology/approach - The authors have developed a computational methodology to predict walking and cycling flows and local centrality of streets, given a road centerline network and occupancy or population density data attributed to building plots. Findings - The authors show the functionality of this model in a hypothetical grid network and a simulated setting in a real town. In addition, the authors show how this model can be validated using crowd-sensed data on human mobility trails. This methodology can be used in assessing sustainable urban mobility plans. Originality/value - The main contribution of this paper is the generalization and adaptation of two network centrality models and a trip-distribution model for studying walking and cycling mobility.
机译:目的-城市交通最可持续的形式是步行和骑自行车。这些交通方式是最环保,最经济可行,最具社会包容性和吸引力的城市交通方式。为了衡量和比较替代行人专用区或自行车基础设施计划的有效性,作者需要衡量行人和骑自行车者的潜在流量。本文旨在讨论这个问题。设计/方法/方法-作者已经开发出一种计算方法,可以预测步行和骑自行车的流量以及街道的局部中心性,前提是要有道路中心线网络和归因于建筑地块的占用或人口密度数据。研究结果-作者在一个假设的网格网络中展示了该模型的功能,并在一个真实城镇中模拟了该模型的功能。此外,作者还展示了如何使用人群移动轨迹上的人群感知数据来验证该模型。该方法可用于评估可持续的城市出行计划。原创性/价值-本文的主要贡献是对两个网络中心性模型和行程分布模型的推广和适应,以研究步行和骑自行车的移动性。

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