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Measuring inter-city connectivity in an urban agglomeration based on multi-source data

机译:基于多源数据的城市群城市间连通性测量

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摘要

A comprehensive understanding of inter-city connectivity is important for regional planning. However, most studies adopted only one single data source for measurements, which is incomplete since each source has its own limitations. There are biases and uncertainties in the connectivity results when using different data sources. To address this problem, our study proposed a novel method that could combine the advantages of multi-source data. First, we measured inter-city connectivities using several datasets individually, and then analyzed each city's node strength based on the connectivities. Next, the performance of each dataset was validated according to several correlation analyses between the node strength and various socio-economic metrics. Based on these validations, we used the genetic algorithm to search for the optimal weights for combination. Only those datasets with higher weights were retained for further calculation. The final connectivity result is more reasonable than any single result according to the validation. For the first time, this study compares different data sources related to inter-city connectivity, and combines their advantages based on selective weighted combination. The results are expected to provide strong support for large-scale regional planning. In addition, the proposed method could be further applied to other large areas for analyzing inter-city connectivities.
机译:全面了解城市间的连通性对于区域规划很重要。但是,大多数研究仅采用一个数据源进行测量,由于每个数据源都有其自身的局限性,因此这是不完整的。使用不同的数据源时,连接结果存在偏差和不确定性。为了解决这个问题,我们的研究提出了一种可以结合多源数据优势的新颖方法。首先,我们使用多个数据集分别测量了城市间的连通性,然后根据连通性分析了每个城市的节点强度。接下来,根据节点强度与各种社会经济指标之间的若干相关分析,对每个数据集的性能进行了验证。基于这些验证,我们使用遗传算法搜索组合的最佳权重。仅保留那些具有较高权重的数据集以进行进一步计算。根据验证,最终的连接结果比任何单个结果都更合理。这项研究首次比较了与城市间连通性相关的不同数据源,并基于选择性加权组合将其优势结合在一起。预期结果将为大规模区域规划提供有力的支持。另外,所提出的方法可以进一步应用于其他大范围的城市间连通性分析。

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