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Evolution of the second-story city: the Minneapolis Skyway System

机译:第二层城市的演变:明尼阿波利斯天际线系统

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摘要

This research describes the growth of the Minneapolis Skyway network and aims to determine if the growth of the system has followed a predictable path. We hypothesize that the system expanded to the places in which it was valued the most. The point accessibility of each block lying within and adjacent to the connected system for each expansion year is calculated and used to predict the expansion of the Skyway System. In order to determine how often the expansion connected the blocks with higher accessibility, a connection-choice logit model relating the probability of joining the network (in a given year) to accessibility measures and network size was employed. The results disclose that accessibility is a significant explanatory factor of network growth. In accordance with the findings from the logit model, a network-growth simulation model was then developed on the basis of the strongest-link assumption (ie for a link to be constructed, it must be ranked the highest in terms of increasing accessibility between the two blocks it connects). The results show that the simulation model performs well in predicting the sequence of skyway additions on the basis of the myopic strongest-link assumption. This suggests that-although various physical, economic, regulatory, and legal factors may have played a role-accessibility remains an important factor in predicting which links are connected during the growth of the Minneapolis Skyway network.
机译:这项研究描述了Minneapolis Skyway网络的增长,旨在确定系统的增长是否遵循了可预测的路径。我们假设系统扩展到了最有价值的地方。计算每个扩展年位于连接系统之内和附近的每个区块的点可访问性,并将其用于预测Skyway系统的扩展。为了确定扩展将块与更高的可访问性连接的频率,使用了将连接网络(在给定年份)的可能性与可访问性度量和网络规模相关联的连接选择logit模型。结果表明,可访问性是网络增长的重要解释因素。根据logit模型的发现,然后在最强链接假设的基础上开发了网络增长仿真模型(即,对于要构建的链接,必须在增加链接之间的可访问性方面将其排名最高)。它连接的两个块)。结果表明,在近视最强链路假设的基础上,该仿真模型在预测空中加油的顺序方面表现良好。这表明,尽管各种物理,经济,法规和法律因素可能发挥了作用,但可访问性仍然是预测明尼阿波利斯空中通道网络增长过程中连接哪些链路的重要因素。

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  • 来源
    《Environment and Planning》 |2009年第4期|711-724|共14页
  • 作者单位

    HDR Engineering Inc., 701 Xenia Avenue South, Suite 600, Minneapolis, MN 55416, USA;

    Department of Civil Engineering, University of Minnesota, 500 Pillsbury Drive SE, Minneapolis, MN 55455, USA;

    Department of Civil Engineering, University of Minnesota, 500 Pillsbury Drive SE, Minneapolis, MN 55455, USA;

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