Exploring the Application of Artificial Intelligence in Understanding Urban Spaces (Case Study: Zanjan City)
Subject Areas : Journal of Land Use and Sustainable Development
1 -
Keywords: Artificial Intelligence, Urban Morphology, Urban Spaces, Spatial Modeling, Urban Spatial Patterns,
Abstract :
Esmaeili Vardanjani, M. , Marsousi, N. , Mokhtari Malekabadi, R. and Aliakbari, E. (2022). Evaluation and Spatial Analysis of Urban Physical Sustainability in Chaharmahal and Bakhtiari Province. Physical Social Planning, 8(4), 115-132.
https://doi.org/10.30473/psp.2022.55349.2368
Parsaeian, M. and Pakzad, S. (2024). Analysis and evaluation of urban morphological indicators of old neighborhoods from the perspective of sustainable development (Study example: Kababian and Kolpa neighborhoods of Hamedan). Sustainable Development of Geographical Environment, (), -.
https://doi.org/10.48308/sdge.2024.236143.1198.
Hosseini, S. Z. , Raofi, R. , Zarabadi Pour, Z. and Moghadam, S. (2024). The Role of AI in Urben Planning and Development. Soffeh, 34(3), 113-138.
https://doi.org/10.48308/sofeh.2024.104799.
Ahadnejad Reveshty, M. , heydari, M. T. , Tahmasebi Moghadam, H. and Sheikh Mohammadi, A. (2025). Spatial analysis of smart growth indicators in the areas of Zanjan city. Urban Space and Social Life, (), -.
https://doi.org/10.22034/jprd.2025.61658.1097.
Han, Shuyan & Song, Dexuan & Xu, Leiqing & Ye, Yu & Yan, Shurui & Shi, Feng & Zhang, Yuhao & Liu, Xiaodong & Du, Hu. (2022). Behaviour in public open spaces: A systematic review of studies with quantitative research methods. Building and Environment. 223. https://doi.org/10.1016/j.buildenv.2022.109444.
Saberifar, R. (2023). Comparing the use of artificial intelligence with traditional methods in determining the vitality of urban spaces in Iran (case study, Mashhad city). Urban Planning Knowledge, 7(2), 33-50.
https://doi.org/10.22124/upk.2023.23507.1825.
Khammar, G. A. and Namazi, A. (2018). Prediction and simulation of spatial-physical development pattern of the city of Chabahar, in the horizon of the year 1420 (2041), using RS and automated cells models. Spatial Planning, 7(2), 79-94.
https://doi.org/10.22108/sppl.2017.81480.0.
Soleimani Golsfidi, Sobhan and Ziaei, Seyed Ali and Lachini, Amir Reza, 1402, Applications of Machine Learning and Artificial Intelligence in Intelligent Transportation System: A Review, 15th International Conference on Transportation and Traffic with Artificial Intelligence Approach in Civil Engineering, Mashhad.
https://doi.org/10.1007/978-981-16-3067-5_16.
Boulaghi, S. , Minaei, M. , Shafizadeh-Moghadam, H. and Kharazmi, O. A. (2023). Improving Modeling of Spatial Development of Cities by Combining Machine Learning Methods and CA-Markov Model (Case Study: Qom Metropolis). Journal of Geography and Regional Development, 21(3), 199-232.
https://doi.org/10.22067/jgrd.2023.82877.1292.
Kabolizadeh, M. , Rangzan, K. and Ghanbari, N. (2024). Automatic Extraction of Urban Features from Very High-Resolution Digital Data Using Deep Neural Networks: A Case Study of Ahvaz City. Advanced Applied Geology, 14(4), 1058-1071.
https://doi.org/10.22055/aag.2024.47110.2457.
Nateghi, M. , Shami, S. and Mamdoohi, A. R. (2024). A Prediction of Vehicles Entering The Traffic Cordons, Using Machine Learning (Case: Tehran City). Road, 32(121), 39-50.
https://doi.org/10.22034/road.2024.471470.2305.
Karami, P. , Eslaminezhad, S. A. , Eftekhari, M. , Boroumand, F. and Akbari, M. (2023). Development of Machine Learning Algorithms to Predict Urban Air Quality Index (Study Area: Tehran City). Journal of Geography and Environmental Hazards, 12(2), 165-186.
https://doi.org/10.22067/geoeh.2022.76121.1212.
Abbasi-Moghadam, D. and Mohammadi, A. (2022). Analysis of Land Use Changes by Using Satellite Images in Kerman City. Journal of Remote Sensing and Geoinformation Research, 1(1), 63-72.
https://doi.org/10.22061/jrsgr.2022.1972.
Al-Suraifi, A. R. J., Shirinabadi, R., Rabiefar, H., & Najarchi, M. (2024). Prediction of fluctuations in the underground water level of Sanghar Plain using machine learning methods. Advanced Technologies in Water Efficiency, 4(1), 99-118.
https://doi.org/10.22126/atwe.2024.10418.1117.
Mirzapour, Hafez, Arshia, Azadeh, and Tahmasibipour, Naser. (2019). Evaluating the efficiency of Geomod model, SimWeight algorithm and MLP algorithm in urban development simulation (Case study: Khorramabad city). Surveying Sciences and Technologies, 9(3), 201-215.
http://jgst.issgeac.ir/article-1-933-en.html.
Ababneh, Alaa. (2023). Smart urban management of green space. Journal of Design for Resilience in Architecture and Planning. 4. 339-353.
https://doi.org/10.47818/DRArch.2023.v4i3101.
Sobhani, N. , Hekmatnia, H. , f, F. and s, S. (2023). Evaluation of urban worn-out structures with urban regeneration approach (Case: Miandoab city). Human Geography Research, 55(3), 115-139.
https://doi.org/10.22059/jhgr.2022.332976.1008401.
Hosseinzadeh, N. , Nezafati Namin, F. , Tavakoli Yaraki, A. , Ahmadi, H. and Ghafari, Y. (2020). Analysis of spatial-physical structure of worn-out urban fabric, using strategic-hierarchical analysis (SWOT-AHP) method. Geography and Human Relationships, 2(4), 352-375.
Modiri, Atoosa & Malekabsi,. (2022). Study and analysis of Kerman spatial structure; based on Ancient public places and Novel urban spaces logic. 12. 404-422.
shahivandi, A. (2018). The impact of modern information and communication technologies on the city physical and spatial structure using creative city approach (Case Study: Isfahan City). Motaleate Shahri, 7(25), 77-90.
https://doi.org/10.34785/J011.2018.025.
Majidnia, M., Ahmadabadi, Z., Zolfaghari, P. et al. Time series analysis of cutaneous leishmaniasis incidence in Shahroud based on ARIMA model. BMC Public Health 23, 1190 (2023).
https://doi.org/10.1186/s12889-023-16121-9