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Measuring and visualizing place-based space-time job accessibility

机译:测量和可视化基于位置的时空作业可访问性

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Place-based accessibility measures, such as the gravity-based model, are widely applied to study the spatial accessibility of workers to job opportunities in cities. However, gravity-based measures often suffer from three main limitations: (1) they are sensitive to the spatial configuration and scale of the units of analysis, which are not specifically designed for capturing job accessibility patterns and are often too coarse; (2) they omit the temporal dynamics of job opportunities and workers in the calculation, instead assuming that they remain stable over time; and (3) they do not lend themselves to dynamic geovisualization techniques. In this paper, a new methodological framework for measuring and visualizing place-based job accessibility in space and time is presented that overcomes these three limitations. First, discretization and dasymetric mapping approaches are used to disaggregate counts of jobs and workers over specific time intervals to a fine-scale grid. Second, Shen's (1998) gravity-based accessibility measure is modified to account for temporal fluctuations in the spatial distributions of the supply of jobs and the demand of workers and is used to estimate hourly job accessibility at each cell. Third, a four-dimensional volumetric rendering approach is employed to integrate the hourly job access estimates into a space-time cube environment, which enables the users to interactively visualize the space-time job accessibility patterns. The integrated framework is demonstrated in the context of a case study of the Tampa Bay region of Florida. The findings demonstrate the value of the proposed methodology in job accessibility analysis and the policy-making process.
机译:诸如基于重力的模型等基于位置的可访问性度量被广泛应用于研究工人在城市中获得工作机会的空间可访问性。但是,基于重力的度量通常受到三个主要局限性:(1)它们对分析单元的空间配置和规模敏感,它们不是专门为捕获作业可访问性模式而设计的,并且往往过于粗糙; (2)他们在计算中忽略了工作机会和工人的时间动态,而是假设他们随着时间的推移保持稳定; (3)他们不适合使用动态地理可视化技术。在本文中,提出了一种用于测量和可视化时空中基于位置的工作可访问性的新方法框架,该框架克服了这三个限制。首先,离散化和等轴测图方法用于将特定时间间隔内的工作和工人计数分解为一个小规模的网格。其次,对Shen(1998)基于重力的可访问性度量进行了修改,以解决工作供应和工人需求的空间分布的时间波动,并用于估计每个单元的每小时工作可访问性。第三,采用了一种二维体绘制方法,将每小时的工作访问估计值集成到一个时空立方体环境中,该环境使用户可以交互式地可视化时空工作可访问性模式。在佛罗里达州坦帕湾地区的案例研究中展示了集成框架。研究结果证明了所提出的方法在工作可及性分析和政策制定过程中的价值。

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