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A multi-procedural approach to evaluating walkability and pedestrian safety.

机译:评估步行性和行人安全性的多过程方法。

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摘要

Walking has sound health benefits and tends to be a pleasurable experience requiring no fuel, fare, license, nor registration. Whilst walking is recommended as part of physical activity, it is necessary to provide a conducive and safe walking environment. In an effort to determine an optimum combination of infrastructure that would create walkable, transit-oriented neighborhoods eliminating unnecessary motorized trips; various approaches evaluating an assortment of features in the walking environment have been implemented. However, some factors such as crash risk which have an essential contribution to the suitability of the walking environment have yet to be considered. Therefore the objective of this study was to quantify the walking environment, by developing a comprehensive walkability index which reflects the condition of the walking environment as well as pedestrians' perceptions of the walking environment. Developing the walkability index included three sub-objectives as follows:;1. Incorporate crash risk in the development of walkability indices which has not been done in previous walkability studies. An overall safety index was designed to estimate safety in the built environment in a more complete form. 2. Analyze the impact of features in the built walking environment on walking for recreational or utilitarian purposes. The analyses also determined whether sampled residents' perception of their walking facilities is comparable to the objective audit observations in various categories. 3. Identify features in the built environment that influence resident perception of their walking environment. This involved analyzing patterns and relationships between features in the walking environment and resident perceptions. Results would relate resident perceptions and walking environment features using calibrated statistical models.;The study methodology included conducting a resident survey, an audit of objectively measured features in the walking environment and a pedestrian safety analysis. The survey collected residents' perceptions of their walking environment expressed using natural language. A perception quality grade of walkability based on resident perceptions was developed from the survey data. An audit of survey neighborhoods was performed by a trained auditor using Google earth, maps, and site visits. Features in the walking environment such as driveways, signals, and crosswalks among others, were measured on a segment by segment basis. Using the various features measured on a segment, an audit quality index for walkability was developed for each neighborhood. A crash index was also developed as a function of population and commercial land use within the survey neighborhoods.;The findings of this study are expected to enhance evaluation of walking environments. The safety index incorporating crash risk and objectively measured safety elements provides a more representative indicator of safety levels within the walking environment. In addition, crash data increases objectivity to neighborhood audits depending on how audit scores are estimated. The fuzzy logic approach to estimating resident perceptions of the walking environment enables analysis of imprecise information to obtain logical output through computing with words. As such, residents' opinions which are analyzed in an approximate framework similar to the human ability to manipulate and reason with perceptions are more consistent with initial resident evaluations. With improved walkability estimation, decision makers are better equipped during planning to select appropriate strategies that encourage walking in a safe environment for recreational and utilitarian purposes.;Comparison of developed audit quality walkability indices, with and without crash data indicates significant differences in walkability indexes. Neighborhoods with initial high walkability indexes ranked much lower after crash data integration. Even without statistical significance, crash data provides more objectivity to audit quality indexes based on depending on data collection and reduction.;The study used multinomial logit to identify parameters that influence walking frequency. Results indicate that land use, and aesthetic and amenities perceptions have a significant relationship with walking frequency. This is intuitive because more varied land uses not only attract more pedestrians, but also provides opportunities for trip chaining. As expected, better aesthetics and amenities and infrastructure are associated with higher walking frequencies. Both aesthetics and amenities and land use perception were correlated with safety, directness and continuity perceptions, implying improving the perception of one category was bound to have an impact on another perception category. (Abstract shortened by ProQuest.).
机译:步行具有良好的健康益处,并且往往是一种愉快的经历,不需要燃料,票价,执照或登记。建议将步行作为身体锻炼的一部分,但有必要提供一个有益且安全的步行环境。努力确定基础设施的最佳组合,以创建适合步行,以公交为导向的社区,从而消除不必要的机动出行;已经实现了评估步行环境中的各种特征的各种方法。然而,诸如碰撞风险之类的一些因素对于步行环境的适应性至关重要。因此,本研究的目的是通过开发一个综合的步行能力指数来量化步行环境,该指数反映步行环境的状况以及行人对步行环境的感知。制定步行性指标包括以下三个子目标:1。将碰撞风险纳入步行性指数的开发中,这在以前的步行性研究中还没有做到。设计了总体安全指数,以更完整的形式估算建筑环境中的安全。 2.分析建筑步行环境中的功能对出于娱乐或功利目的步行的影响。分析还确定了抽样居民对步行设施的看法是否可与各种类别的客观审计观察结果相媲美。 3.识别建筑环境中会影响居民对其步行环境的感知的特征。这涉及分析步行环境中的特征与居民感知之间的模式和关系。结果将使用校准的统计模型将居民的感知与步行环境特征联系起来。研究方法包括进行居民调查,对步行环境中客观测量的特征进行审核以及行人安全分析。该调查收集了居民对使用自然语言表达的步行环境的看法。根据调查数据开发了基于居民感知的步行质量感知质量等级。训练有素的审核员使用Google Earth,地图和站点访问对调查社区进行了审核。步行环境中的特征(例如车道,信号和人行横道等)是逐段进行测量的。使用在路段上测量的各种功能,为每个社区开发了针对步行性的审核质量指标。崩溃指数还根据调查邻里的人口和商业用地而开发。该研究的结果有望增强对步行环境的评估。结合了碰撞风险和客观测量的安全要素的安全指数提供了步行环境内安全水平的更具代表性的指标。此外,崩溃数据会增加对邻域审核的客观性,具体取决于估算审核分数的方式。用于估计居民对步行环境的感知的模糊逻辑方法可以分析不精确的信息,从而通过用词计算获得逻辑输出。因此,在类似于人类操作和感知能力的近似框架下分析的居民意见与最初的居民评估更加一致。借助改进的步行能力估计,决策者可以在规划期间更好地选择合适的策略,以鼓励出于娱乐和功利目的在安全的环境中步行。;比较已开发的审计质量步行能力指数(有和没有崩溃数据)表明步行能力指数存在显着差异。碰撞数据集成后,初始具有较高步行性指标的社区排名低得多。即使没有统计意义,崩溃数据也可以根据数据收集和减少的情况为审核质量指标提供更多的客观性。该研究使用多项式logit来识别影响步行频率的参数。结果表明,土地使用,审美和设施感知与步行频率有显着关系。这是很直观的,因为更多样化的土地用途不仅吸引了更多行人,而且还提供了旅行链接的机会。如预期的那样,更好的美学,设施和基础设施与更高的步行频率相关。美观和舒适性以及土地使用的感知与安全性,直接性和连续性感知相关,这意味着改善一种类别的感知必然会对另一种感知类别产生影响。 (摘要由ProQuest缩短。)。

著录项

  • 作者

    Nyagah, Peris.;

  • 作者单位

    University of Nevada, Las Vegas.;

  • 授予单位 University of Nevada, Las Vegas.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 257 p.
  • 总页数 257
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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