Reference: | 內政部營建署. (2022). 《都市人本交通道路規劃設計手冊(第二版)》 蔡育新, 徐嘉信, 王絢, & 林家靖. (2021). 因應氣候變遷之都市街區規劃設計策略與永續 [共效益]-建物重建階段. 都市與計劃, 48(1), 27-48 石婉瑜, & Mabon, L. (2018). 臺北盆地的熱環境特徵與都市綠色基盤的影響. 都市與計劃, 45(4), 283–300. Banerjee, A., Maurya, A. K., & Lämmel, G. (2018). A Review of Pedestrian Flow Characteristics and Level of Service over Different Pedestrian Facilities. Collective Dynamics, 3(0), 1–52. https://doi.org/10.17815/CD.2018.17 Barbarossa, L. (2020). The Post Pandemic City: Challenges and Opportunities for a Non-Motorized Urban Environment. An Overview of Italian Cases. Sustainability 2020, Vol. 12, Page 7172, 12(17), 7172. https://doi.org/10.3390/SU12177172 Cameron, R. W. F., Blanuša, T., Taylor, J. E., Salisbury, A., Halstead, A. J., Henricot, B., & Thompson, K. (2012). The domestic garden – Its contribution to urban green infrastructure. Urban Forestry & Urban Greening, 11(2), 129–137. https://doi.org/10.1016/J.UFUG.2012.01.002 Haq, S. Md. A., & Haq, S. Md. A. (2011). Urban Green Spaces and an Integrative Approach to Sustainable Environment. Journal of Environmental Protection, 2(5), 601–608. https://doi.org/10.4236/JEP.2011.25069 Humberto, M., Laboissière, R., Giannotti, M., Luiz, C., Daniel, M., Cruz, A., & Primon, H. (2019). Walking and walkability: do built environment measures correspond with pedestrian activity? Ambiente Construído, 19(4), 23–36. https://doi.org/10.1590/S1678-86212019000400341 Koh, P. P., & Wong, Y. D. (2013). Comparing pedestrians’ needs and behaviours in different land use environments. Journal of Transport Geography, 26, 43–50. https://doi.org/10.1016/J.JTRANGEO.2012.08.012 Koohsari, M. J., Oka, K., Owen, N., & Sugiyama, T. (2019). Natural movement: A space syntax theory linking urban form and function with walking for transport. Health & Place, 58, 102072. https://doi.org/10.1016/J.HEALTHPLACE.2019.01.002 Lan, W., Dang, J., Wang, Y., & Wang, S. (2018). Pedestrian detection based on yolo network model. Proceedings of 2018 IEEE International Conference on Mechatronics and Automation, ICMA 2018, 1547–1551. https://doi.org/10.1109/ICMA.2018.8484698 Lerman, Y., Rofè, Y., & Omer, I. (2014). Using Space Syntax to Model Pedestrian Movement in Urban Transportation Planning. Geographical Analysis, 46(4), 392–410. https://doi.org/10.1111/GEAN.12063 Lu, Y. (2019). Using Google Street View to investigate the association between street greenery and physical activity. Landscape and Urban Planning, 191, 103435. https://doi.org/10.1016/J.LANDURBPLAN.2018.08.029 Mehta, V. (2008). Walkable streets: pedestrian behavior, perceptions and attitudes. Http://Dx.Doi.Org/10.1080/17549170802529480, 1(3), 217–245. https://doi.org/10.1080/17549170802529480 PUSHKAREV, B Zupan, J M Pushkarev, Boris Zupan, & Jeffrey M. (1975). CAPACITY OF WALKWAYS. https://trid.trb.org/view/35106 Rasidi, M. H., Jamirsah, N., & Said, I. (2012). Urban Green Space Design Affects Urban Residents’ Social Interaction. Procedia - Social and Behavioral Sciences, 68, 464–480. https://doi.org/10.1016/j.sbspro.2012.12.242 Rasouli, A., & Tsotsos, J. K. (2020). Autonomous vehicles that interact with pedestrians: A survey of theory and practice. IEEE Transactions on Intelligent Transportation Systems, 21(3), 900–918. https://doi.org/10.1109/TITS.2019.2901817 Rezaei, M., Azarmi, M., Mohammad, F., & Mir, P. (2021). Traffic-Net: 3D Traffic Monitoring Using a Single Camera. https://arxiv.org/abs/2109.09165v1 World Health Organization. (2017). Urban green spaces: a brief for action. |