Dynamic accessibility mapping using floating car data: a network-constrained density estimation approach

IF 5.7 2区 工程技术 Q1 ECONOMICS Journal of Transport Geography Pub Date : 2011-05-01 DOI:10.1016/j.jtrangeo.2010.07.003
Qingquan Li , Tong Zhang , Handong Wang , Zhe Zeng
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引用次数: 113

Abstract

The concept of accessibility has been attracting increasing attention from transportation planners and researchers. The goal of “smart growth” is to promote accessibility rather than mobility. Accessibility mapping is a highly effective tool to support smart growth planning. Studies on accessibility mapping and analysis have proliferated over the last decade as Geographic Information Systems (GIS) has been widely adopted to produce accessibility maps. Nevertheless, a major negative aspect of these efforts is the lack of dynamic access measurement. Traffic conditions change significantly over space and time, leading to non-stationary travel time estimation which is central to accessibility measurement. In this paper, we propose a dynamic accessibility measure based on real-time travel speeds that are derived from floating car data (FCD). We introduce a novel integrated access measure to compute accessibility to Points of Interest (POIs) constrained by road networks. POI accessibility measures are obtained by means of both Network Kernel Density Estimation (NKDE) and Network Linear Density Estimation (NLDE). Therefore, we are able to capture temporal dynamics by taking into account speed variability using FCD during peak and off-peak hours on weekdays and weekends. We demonstrate that the proposed approach can capture the spatio-temporal dynamics of accessibility using FCD for Wuhan city in China. Empirical studies were conducted to examine the impacts of density estimation parameters (search bandwidths) and POI weights on the integrated accessibility. We find that search bandwidth and POI weights would impose profound influence on final accessibility values. Experiments also show that NKDE and NLDE would produce significantly different estimation results.

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使用浮动汽车数据的动态可达性映射:一种网络约束密度估计方法
可达性的概念越来越受到交通规划者和研究者的关注。“智能增长”的目标是促进可达性,而不是流动性。可访问性映射是支持智能增长规划的一个非常有效的工具。近十年来,随着地理信息系统(GIS)被广泛用于绘制无障碍地图,对无障碍地图和分析的研究激增。然而,这些努力的一个主要消极方面是缺乏动态访问度量。交通条件随空间和时间的显著变化,导致非平稳的旅行时间估计,这是可达性测量的核心。在本文中,我们提出了一种基于实时行驶速度的动态可达性度量方法,该方法来源于浮动汽车数据(FCD)。我们提出了一种新的综合访问度量来计算受道路网络约束的兴趣点(poi)的可达性。通过网络核密度估计(NKDE)和网络线性密度估计(NLDE)两种方法获得POI可达性测度。因此,我们能够通过在工作日和周末的高峰和非高峰时段使用FCD考虑速度变化来捕捉时间动态。结果表明,该方法可以捕捉武汉市可达性的时空动态特征。实证研究了密度估计参数(搜索带宽)和POI权重对综合可达性的影响。我们发现搜索带宽和POI权重对最终可达性值有很大的影响。实验还表明,NKDE和NLDE会产生显著不同的估计结果。
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来源期刊
CiteScore
11.50
自引率
11.50%
发文量
197
期刊介绍: A major resurgence has occurred in transport geography in the wake of political and policy changes, huge transport infrastructure projects and responses to urban traffic congestion. The Journal of Transport Geography provides a central focus for developments in this rapidly expanding sub-discipline.
期刊最新文献
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