4.6 Article

A Machine Learning and Computer Vision Study of the Environmental Characteristics of Streetscapes That Affect Pedestrian Satisfaction

Journal

SUSTAINABILITY
Volume 14, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/su14095730

Keywords

street environment; streetscapes; walking satisfaction; computer vision; machine learning; explainable AI; SHAP

Funding

  1. National Research Foundation of Korea (NRF) - Korea government (MSIT) [NRF-2019R1A2C1088467]

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Pedestrian-friendly cities are a global trend, and this study identified the physical and visual characteristics of the street environment that affect pedestrian satisfaction. The study analyzed vast amounts of visual data using computer vision techniques and found that visual features have a greater impact on pedestrian satisfaction than physical features. To create a highly satisfying street, it is important to consider the perspective of pedestrians and provide wide sidewalks, fewer lanes, and proper arrangement of street furniture.
Pedestrian-friendly cities are a recent global trend due to the various urbanization problems. Since humans are greatly influenced by sight while walking, this study identified the physical and visual characteristics of the street environment that affect pedestrian satisfaction. In this study, vast amounts of visual data were collected and analyzed using computer vision techniques. Furthermore, these data were analyzed through a machine learning prediction model and SHAP algorithm. As a result, every visual feature of the streetscape, for example, the visible area and urban design quality, had a greater effect on pedestrian satisfaction than any physical features. Therefore, to build a street with high pedestrian satisfaction, the perspective of pedestrians must be considered, and wide sidewalks, fewer lanes, and the proper arrangement of street furniture are required. In conclusion, visually, low enclosure, adequate complexity, and large green areas combine to create a highly satisfying pedestrian walkway. Through this study, we could suggest an approach from a visual perspective for the pedestrian environment of the street and see the possibility of using computer vision techniques.

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