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A spatio-temporal modelling approach for the study of the connectivity and accessibility of the Guangzhou metropolitan network

机译:时空建模方法研究广州都市圈的连通性和可及性

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The urban growth of large cities in China is at a critical stage with the booming of the economy and impressive increase of the population and traffic demand. This paper studies and qualifies the growth and accessibility of a rapid rail transit network, and characterizes the relations with urban development using a spatio-temporal modelling approach. Several measures of the network topological structure, i.e., beta index (β), cyclomatic number (μ), alpha index (α) and gamma index (γ), are selected in order to examine and quantify the overall metro network growth of the city of Guangzhou in China. The results show that the current spatial connectivity of the Guangzhou's metro network is relatively low, this stressing the need to augment the reliability of the connections between the network nodes, and to increase the number of circuits in the network. A travel-time matrix is modelled and evaluates the nodes accessibility and characterizes the spatio-temporal evolution of the metro network. The spatial interaction between the different nodes of the network, as well as nodes accessibility are analyzed and derived from a potential-based model. The extension of the metro network clearly shows a dramatic tendency of positive accessibility evolution but with regional differences. In particular, the core of the city is surrounded by areas with highest accessibility values and gradually expanding outward from the core, while the locations of transfer stations have significant influence on the variation of network time-based accessibility. Taking into account different network development scenarios, the approach reveals regional accessibility differences in the metropolitan area of the city of Guangzhou, this clearly illustrating the impact of network accessibility in urban development.
机译:随着经济的蓬勃发展以及人口和交通需求的惊人增长,中国大城市的城市发展正处于关键阶段。本文研究并验证了快速轨道交通网络的增长和可及性,并使用时空建模方法表征了与城市发展的关系。选择了几种网络拓扑结构度量,即β指数(β),圈数(μ),α指数(α)和γ指数(γ),以检查和量化城市整体地铁网络的增长中国广州的地图。结果表明,广州城域网当前的空间连通性相对较低,这强调了需要增强网络节点之间连接的可靠性,并增加网络中电路的数量的需求。对旅行时间矩阵进行建模,并评估节点的可访问性,并描述地铁网络的时空演化。网络不同节点之间的空间交互以及节点可访问性都经过分析,并从基于势的模型中得出。地铁网络的扩展清楚地表明了无障碍通道发展的积极趋势,但存在地区差异。特别是,城市的核心被具有最高可达性值的区域包围,并逐渐从核心区域向外扩展,而换乘站的位置对基于网络时间的可达性的变化具有重大影响。考虑到不同的网络开发方案,该方法揭示了广州市都会区的区域可访问性差异,这清楚地说明了网络可访问性对城市发展的影响。

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