Digital Twins for Smarter Iranian Cities: A Future Studies Perspective

Nader Zali , Ali Soltani , Peyman Najafi , Salima Ebadi Qajari , Mehrdad Mehrju

Computational Urban Science ›› 2024, Vol. 4 ›› Issue (1) : 43

PDF
Computational Urban Science ›› 2024, Vol. 4 ›› Issue (1) : 43 DOI: 10.1007/s43762-024-00155-9
Original Paper

Digital Twins for Smarter Iranian Cities: A Future Studies Perspective

Author information +
History +
PDF

Abstract

This study explores the future of Urban Digital Twin (UDT) in urban planning systems of developing countries, with a focus on Iran. Despite UDT's growing popularity, its implementation in developing countries is limited. The research identifies critical factors influencing UDT development, including organisational acceptance, urban infrastructure, policy and legislation, and technology and innovation. Using a futures studies approach, the study employs the Delphi method, MICMAC (Matrix Impact Cross-Reference Multiplication Applied to a Classification) technique, and SISMW (Strategic Uncertainties and Strengths Weaknesses Opportunities and Threats Matrix) methodologies to analyse these factors. The study reveals that international sanctions, organisational factors, technological factors, and infrastructure limitations hinder UDT development in Iran. However, UDT technology has the potential to transform urban planning in developing countries. The study provides a roadmap for collaboration between public and private sectors and research institutes to facilitate UDT implementation, highlighting the importance of legislative frameworks, digital infrastructure, innovation, and stakeholder engagement. Policy implications suggest that governments should prioritise supportive policies, investments in digital infrastructure, and collaborative efforts to address data privacy, security, and ownership issues. By addressing these challenges, developing countries can leverage UDT technology to improve urban planning, resource management, and quality of life.

Cite this article

Download citation ▾
Nader Zali, Ali Soltani, Peyman Najafi, Salima Ebadi Qajari, Mehrdad Mehrju. Digital Twins for Smarter Iranian Cities: A Future Studies Perspective. Computational Urban Science, 2024, 4(1): 43 DOI:10.1007/s43762-024-00155-9

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Adreani L, Bellini P, Colombo C, Fanfani M, Nesi P, Pantaleo G, Pisanu R. Implementing integrated digital twin modelling and representation into the Snap4City platform for smart city solutions. Multimedia Tools and Applications, 2023, 83(12): 37121-37146

[2]

Agbossou, I. (2023). Multi-Scalar urban digital twin design: Architecture and OpenUSD standards based methodology. PriMera Scientific Engineering, 4(1). https://doi.org/10.56831/psen-04-100

[3]

Allam, Z., & Jones, D. S. (2021). Future (post-COVID) digital, smart and sustainable cities in the wake of 6G: Digital twins, immersive realities and new urban economies. Land Use Policy, 101. https://doi.org/10.1016/j.landusepol.2020.105201

[4]

Allan A, Soltani A, Abdi MH, Zarei M. Driving forces behind land use and land cover change: A systematic and bibliometric review. Land, 2022, 11(8): 1222

[5]

Al-Sehrawy R, Kumar B, Watson R. A digital twin uses classification system for urban planning & city infrastructure management. Journal of Information Technology in Construction, 2021, 26: 832-862

[6]

Alva P, Biljecki F, Stouffs R. Use cases for district-scale urban digital twins. International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences - ISPRS Archives, 2022, 48(4/W4-2022): 5-12

[7]

Amiri E, Sangar AB. Assessing the ICT development in Iranian cities: The strategy to accelerate digital advancement. Technological Forecasting and Social Change, 2023, 197: 122904

[8]

Andrade M, Medeiros M, Medeiros T, Azevedo M, Silva M, Costa DG, Silva I. On the Use of Biofuels for Cleaner Cities: Assessing Vehicular Pollution through Digital Twins and Machine Learning Algorithms. Sustainability, 2024, 16(2): 708

[9]

Argota Sánchez-Vaquerizo J. Getting real: The challenge of building and validating a large-scale digital twin of Barcelona’s traffic with empirical data. ISPRS International Journal of Geo-Information, 2022, 11(1): 24

[10]

Attar, K., Abbasianjahromi, H., & Poshdar, M. (2024). Digital twins for improving the construction safety: Literature content analysis and gap spotting for future directions. Iranian Journal of Science and Technology, Transactions of Civil Engineering. https://doi.org/10.1007/s40996-024-01495-6

[11]

Azizi P, Soltani A, Bagheri F, Sharifi S, Mikaeili M. An integrated modelling approach to urban growth and land use/cover change. Land, 2022, 11(10): 1715

[12]

Bagheri B, Soltani A. The spatio-temporal dynamics of urban growth and population in metropolitan regions of Iran. Habitat International, 2023, 136: 102797

[13]

Barresi A. Urban Digital Twin and urban planning for sustainable cities. TECHNE - Journal of Technology for Architecture and Environment, 2023, 25: Article 25

[14]

Batty M, Axhausen KW, Giannotti F, Pozdnoukhov A, Bazzani A, Wachowicz M, Ouzounis G, Portugali Y. Smart cities of the future. European Physical Journal: Special Topics, 2012, 214(1): 481-518

[15]

Bibri S. A methodological framework for futures studies: Integrating normative backcasting approaches and descriptive case study design for strategic data-driven smart sustainable city planning. Energy Informatics, 2020, 3(31): 1-42 Springer Open

[16]

Broo, D. G., & Schooling, J. (2023). Digital twins in infrastructure: Definitions, current practices, challenges and strategies. International Journal of Construction Management. https://www.tandfonline.com/doi/abs/10.1080/15623599.2021.1966980.

[17]

Bujari, A., Calvio, A., Foschini, L., Sabbioni, A., & Corradi, A. (2021). A digital twin decision support system for the urban facility management process. Sensors, 21(24). https://doi.org/10.3390/s21248460.

[18]

Calzati S, van Loenen B. Towards a Citizen- and Citizenry-Centric Digitalization of the Urban Environment: Urban Digital Twinning as Commoning. Digital Society, 2023, 2(3): 1-20

[19]

Camposano JC, Smolander K, Ruippo T. Seven metaphors to understand digital twins of built assets. IEEE Access, 2021, 9: 27167-27181

[20]

Caprari G, Castelli G, Montuori M, Camardelli M, Malvezzi R. Digital twin for urban planning in the green deal era: A state of the art and future perspectives. Sustainability, 2022, 14(10): Article 10

[21]

Caragliu A, Del Bo C, Nijkamp P. Smart cities in Europe. Journal of Urban Technology, 2011, 18(2): 65-82

[22]

Chatziioannou I, Nikitas A, Tzouras P, Bakogiannis E, Alvarez-Icaza L, Chias-Becerril L, Karolemeas C, Tsigdinos S, Wallgren P, Rexfelt O. Ranking sustainable urban mobility indicators and their matching transport policies to support liveable city Futures: A MICMAC approach. Transportation Research Interdisciplinary Perspectives, 2023, 18(100788): 1-17 Elsevier Ltd

[23]

Corrado CR, Delong SM, Holt EG, Hua EY. Combining green metrics and digital twins for sustainability planning and governance of smart buildings and cities. Sustainability, 2022, 14(20): 12988 1–22

[24]

Dembski F, Wössner U, Letzgus M, Ruddat M, Yamu C. Urban digital twins for smart cities and citizens: The case study of herrenberg, germany. Sustainability (Switzerland), 2020, 12(6): 1-17

[25]

Deng, T., Zhang, K., Shen, Z. J., & (Max). (2021). A systematic review of a digital twin city: A new pattern of urban governance toward smart cities. Journal of Management Science and Engineering, 6(2), 125–134. https://doi.org/10.1016/j.jmse.2021.03.003

[26]

Deren L, Wenbo W, Zhenfeng SH. Smart city based on digital twins. Journal of Computational Urban Science, 2021, 1(4): 1-11

[27]

Far SB, Rad AI. Applying digital twins in metaverse: User interface, security and privacy challenges. Journal of Metaverse, 2022, 2(1): 8-16 https://www.researchgate.net/publication/359730278

[28]

Ferré-Bigorra J, Casals M, Gangolells M. The adoption of urban digital twins. Cities, 2022, 131: 103905

[29]

Fukawa, N. (2023). Scholars’ Mine Enhancing Innovation via the Digital Twin Enhancing Innovation via the Digital Twin. https://doi.org/10.1111/jpim.12655

[30]

Garske B, Holz W, Ekardt F. Digital twins in sustainable transition : Exploring the role of EU data governance. Frontiers in Research Metrics and Analytics, 2024, 9: 1-13

[31]

Grübel J, Thrash T, Aguilar L, Gath-Morad M, Chatain J, Sumner RW, Hölscher C, Schinazi VR. The Hitchhiker’s guide to fused twins: A conceptualization to access digital twins in situ in smart cities. Remote Sensing, 2022, 14: 1-54 http://arxiv.org/abs/2202.07104

[32]

Guma PK, Monstadt J. Smart city making? The spread of ICT-driven plans and infrastructures in Nairobi. Urban Geography, 2021, 42(3): 360-381

[33]

Hämäläinen, M. (2021). Smart city dvelopment with digital twin technology. 291–303. https://doi.org/10.18690/978-961-286-362-3.20

[34]

Handcock MS, Gile KJ. Comment: On the Concept of Snowball Sampling. Sociological Methodology, 2011, 41(1): 367-371

[35]

Hielkema H, Hongisto P. Developing the Helsinki smart city: The role of competition and collaboration for innovation in the digital economy. Journal of the Knowledge Economy, 2013, 4(2): 103-117

[36]

Kitchin R. The real-time city?. Big Data and Smart Urbanism. Geojournal, 2014, 79(1): 1-14

[37]

Kopponen A, Hahto A, Kettunen P, Mikkonen T, Makitalo N, Nurmi J, Rossi M. Empowering Citizens with Digital Twins: A Blueprint. IEEE Internet Computing, 2022, 26(5): 7-16

[38]

Kumar H, Kumar Singh M, Gupta M. A policy framework for city eligibility analysis: TISM and fuzzy MICMAC weighted approach to select a city for smart city transformation in India. Land Use Policy, 2019, 82: 375-390 Elsevier Ltd

[39]

Laudati, D., & Pesaran M. H. (2023). Identifying the effects of sanctions on the Iranian economy using newspaper coverage. Journal of Applied Econometrics, 38(3), 271–294. https://www.researchgate.net/publication/355390896

[40]

Lehtola VV, Koeva M, Elberink SO, Raposo P, Virtanen JP, Vahdatikhaki F, Borsci S. Digital twin of a city: Review of technology serving city needs. International Journal of Applied Earth Observation and Geoinformation, 2022, 114(June): 102915

[41]

Li, X., Liu, H., Wang, W., Zheng, Y., Lv, H., & Lv, Z. (2022a). Big data analysis of the internet of things in the digital twins of smart city based on deep learning. Future Generation Computer Systems, 128, 167–177. https://doi.org/10.1016/j.future.2021.10.006

[42]

Li X, Luo J, Li Y, Wang W, Hong W, Liu M, Li X, Lv Z. Application of effective water-energy management based on digital twin technology in sustainable cities construction. Sustainable Cities and Society, 2022, 87(October): 104241

[43]

Lyu, Z. (2024). Handbook of digital twins. Boca Raton: CRC Press, 1st Edition. https://doi.org/10.1201/9781003425724

[44]

Madanian, S., Smaniotto Costa, C. (2017). A model for evaluating a greenbelt planning in the city of Qazvin (Iran) using MICMAC method. Modeling Earth Systems and Environment, Department of Architecture and Urban Planning. Springer International Publishing AG. https://doi.org/10.1007/s40808-017-0373-1

[45]

Masini, E. (1993). Why futures studies?. United Kingdom: Grey Seal.

[46]

Mihai S, Yaqoob M, Hung DV, Davis W, Towakel P, Raza M, Barn B, Shetve D, Prasad RV, Venkataraman H, Trestian R, Nguyen HX. Digital Twins : A Survey on Enabling Technologies, Challenges, Trends and Future Prospects. IEEE Communications Surveys & Tutorials, 2023, 24(4): 1-38

[47]

Mozuni M, Jonas W. An introduction to the morphological delphi method for design: A tool for future-oriented design research. She ji, The Journal of Design, Economics, and Innovation, 2018, 3(4): 303-318 Elsevier B.V

[48]

Najafi P, Mohammadi M, van Wesemael P, Le Blanc PM. A user-centred virtual city information model for inclusive community design: State-of-art. Cities, 2023, 134: 104203

[49]

Najafi P, Soltani A, Khan AA, Chizfahm M, Sepasgozar SME, Gu N. Digital twin for urban decision support systems: Scientometric and thematic analysis, 2024 Routledge

[50]

Nochta T, Wan L, Schooling JM, Parlikad AK. A Socio-Technical Perspective on Urban Analytics: The Case of City-Scale Digital Twins. Journal of Urban Technology, 2021, 28(1–2): 263-287

[51]

Oehlschläger D, Glas AH, Eßig M. Acceptance of digital twins of customer demands for supply chain optimisation: An analysis of three hierarchical digital twin levels. Industrial Management & Data Systems, 2024, 124(3): 1050-1075

[52]

Panahi N, Pourjafar M, Ranjbar E, Soltani A. Examining older adults' attitudes towards different mobility modes in Iran. Journal of Transport & Health, 2022, 26: 101413

[53]

Papyshev G, Yarime M. Exploring city digital twins as policy tools : A task-based approach to generating synthetic data on urban mobility. Journal of Data & Policy, 2021, 3(e16): 1-18

[54]

Parmar R, Leiponen A, Thomas LDW. Building an organizational digital twin. Business Horizons, 2020, 63(6): 725-736

[55]

Petrova-Antonova D, Ilieva S. Digital twin modeling of smart cities. Advances in Intelligent Systems and Computing, 2021, 1253(AISC (January)): 384-390

[56]

Popa, E. O., Hilten, M. Van, Oosterkamp, E., & Bogaardt, M. (2021). The use of digital twins in healthcare : socio-ethical benefits and socio-ethical risks. 1–25.

[57]

Pramanik MI, Lau RY, Demirkan H, Azad MA. Smart health: Big data enabled health paradigm within smart cities. Expert Systems with Applications, 2017, 87: 370-383

[58]

Qadikolaei MR, Zali N, Soltani A. Spatiotemporal investigation of the digital divide, the case study of Iranian Provinces. Environment, Development and Sustainability, 2024, 26(1): 869-884

[59]

Quek, H. Y., Sielker, F., Akroyd, J., Bhave, A. N., von Richthofen, A., Herthogs, P., van der Yamu, C., & L., Wan, L., Nochta, T., Burgess, G., Lim, M. Q., Mosbach, S., & Kraft, M. (2023). The conundrum in smart city governance: Interoperability and compatibility in an ever-growing ecosystem of digital twins. Data & Policy, 5, e6. https://doi.org/10.1017/dap.2023.1

[60]

Raes L, Michiels P, Adolphi T, Tampere C, Dalianis A, McAleer S, Kogut P. DUET: A framework for building interoperable and trusted digital twins of smart cities. IEEE Internet Computing, 2022, 26(3): 43-50

[61]

Rezaei Z, Vahidnia MH, Aghamohammadi H, Azizi Z, Behzadi S. Digital twins and 3D information modeling in a smart city for traffic controlling: A review. Journal of Geography and Cartography, 2023, 6(1): 1865

[62]

Ruohomaki, T., Kesaniemi, Q., Airaksinen, E., Martikka, M., Huuska, P., & Suomisto, J. (2018). Smart city platform enabling DT. IEEE Intelligent Systems. https://doi.org/10.1109/IS.2018.8710517

[63]

Sahu, Y., & Upadhyay, V. K. (2024). Environmental application of digital twins: A review. Environmental Risk and Resilience in the Changing World: Integrated Geospatial AI and Multidimensional Approach, 287–295.

[64]

Savage T, Akroyd J, Mosbach S, Hillman M, Sielker F, Kraft M. Universal digital twin – The impact of heat pumps on social inequality. Advances in Applied Energy, 2022, 5(November 2021): 100079

[65]

Schrotter G, Hürzeler C. The Digital Twin of the City of Zurich for Urban Planning. PFG - Journal of Photogrammetry, Remote Sensing and Geoinformation Science, 2020, 88(1): 99-112

[66]

Shahat E, Hyun CT, Yeom C. City digital twin potentials: A review and research agenda. Sustainability (Switzerland), 2021, 13(6): 1-20

[67]

Shahzad M, Shafiq MT, Douglas D, Kassem M. Digital twins in built environments : An Investigation of the characteristics, applications, and challenges. Buildings, 2022, 12(2): 120 1–19

[68]

Shehadeh A, Alshboul O, Arar M. Enhancing Urban Sustainability and Resilience: Employing Digital Twin Technologies for Integrated WEFE Nexus Management to Achieve SDGs. Sustainability, 2024, 16(17): 7398

[69]

Shirowzhan S, Tan W, Sepasgozar SME. Digital Twin and CyberGIS for Improving Connectivity and Measuring the Impact of Infrastructure Construction Planning in Smart Cities. ISPRS International Journal of Geo-Information, 2020, 9(4): 240

[70]

Silva BN, Khan M, Han K. Towards sustainable smart cities: A review of trends, architectures, components, and open challenges in smart cities. Sustainable Cities and Society, 2018, 38(January): 697-713

[71]

Singapore Urban Redevelopment Authority. (2019). Digital Twin for Urban Development. Retrieved from https://www.ura.gov.sg/Corporate/Smart-Planning/Digital-Twin

[72]

Soltani A, Hosseinpour M, Hajizadeh A. Urban sprawl in Iranian medium-sized cities; Investigating the role of masterplans. Journal of Sustainable Development, 2017, 10(1): 122

[73]

Venkatesh KP, Brito G, Boulos MNK. Health digital twins in life science and health care innovation. Annual Review of Pharmacology, 2024, 64(1): 159-170

[74]

Wang W, He F, Li Y, Tang SH, Li X, Xia J, Lv Zh. Data information processing of traffic digital twins in smart cities using edge intelligent federated learning. Information Processing & Management, 2023, 60(2): 103171

[75]

Waqar A, Othman I, Almujibah H, Khan MB, Alotaibi S, Elhassan AAM. Factors influencing adoption of digital twin advanced technologies for smart city development: Evidence from Malaysia. Buildings, 2023, 13(3): Article 3

[76]

Weil C, Bibri SE, Longchamp R, Golay F, Alahi A. Urban Digital Twin Challenges: A Systematic Review and Perspectives for Sustainable Smart Cities. Sustainable Cities and Society, 2023, 99: 104862

[77]

Wenner, M.D., Meyer-Westphal, M., Herbrand, M., & Ullerich, C. (2021). The concept of the digital twin to revolutionise the infrastructure maintenance: The Pilot Project smartBRIDGE Hamburg.

[78]

White G, Zink A, Codecá L, Clarke S. A digital twin smart city for citizen feedback. Cities, 2021, 110: 103064

[79]

Wu J, Wang X, Dang Y, Lv Z. Digital twins and artificial intelligence in transportation infrastructure: Classification, application, and future research directions. Computers and Electrical Engineering, 2022, 101: 107983

[80]

Yu, D., & He, Z. (2022). Digital twin-driven intelligence disaster prevention and mitigation for infrastructure : advances, challenges, and opportunities. In Natural Hazards 112 (4). https://doi.org/10.1007/s11069-021-05190-x. Springer

[81]

Zali N, Amiri S, Yigitcanlar T, Soltani A. Autonomous vehicle adoption in developing countries: Futurist insights. Energies, 2022, 15(22): Article 22

[82]

Zotova N, Cohen JH. Remittances review. Remittances Review, 2016, 1(1): 5-16 https://journal.tplondon.com/index.php/rem/article/view/744

[83]

Roohani Qadikolaei, M., Hatamai, Y., Nikmard Namin, S., & Soltani, A. (2024). Spatial heterogeneity in housing price-transaction ratios: a historical analysis of Tehran, International Journal of Housing Markets and Analysis. https://doi.org/10.1108/IJHMA-08-2024-0118.

[84]

Soltani, A., Goodarzi, M., Soltani, Z. & Fadaei Jazi, F. (2024). The future of Iranian social housing: a regional governance challenge. Bulletin of Geography. Socio-economic Series, 66, 7-26. https://doi.org/10.12775/bgss-2024-0030.

[85]

Dehghani, A., & Soltani, A. (2023). Site Selection of Car Parking with the GIS-Based Fuzzy Multi-Criteria Decision Making. International Journal of Information Technology & Decision Making, 23(02), 715-740. https://doi.org/10.1142/s0219622023500293.

RIGHTS & PERMISSIONS

The Author(s)

AI Summary AI Mindmap
PDF

322

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/