Sustainable smart city and Sustainable Development Goals (SDGs): A review
Received date: 2024-08-23
Accepted date: 2025-01-05
Online published: 2025-03-13
Copyright
The rapid urbanization and increasing challenges are faced by cities globally, including climate change, population growth, and resource constraints. Sustainable smart city (also referred to as “smart sustainable city”) can offer innovative solutions by integrating advanced technologies to build smarter, greener, and more livable urban environments with significant benefits. Using the Web of Science (WoS) database, this study examined: (i) the mainstream approaches and current research trends in the literature of sustainable smart city; (ii) the extent to which the research of sustainable smart city aligns with Sustainable Development Goals (SDGs); (iii) the current topics and collaboration patterns in sustainable smart city research; and (iv) the potential opportunities for future research on the sustainable smart city field. The findings indicated that research on sustainable smart city began in 2010 and gained significant momentum in 2013, with China leading, followed by Italy and Spain. Moreover, 59.00% of the selected publications on the research of sustainable smart city focus on SDG 11 (Sustainable Cities and Communities). Bibliometric analysis outcome revealed that artificial intelligence (AI), big data, machine learning, and deep learning are emerging research fields. The terms smart city, smart cities, and sustainability emerged as the top three co-occurring keywords with the highest link strength, followed by frequently co-occurring keywords such as AI, innovation, big data, urban governance, resilience, machine learning, and Internet of Things (IoT). The clustering results indicated that current studies explored the theoretical foundation, challenges, and future prospects of sustainable smart city, with an emphasis on sustainability. To further support urban sustainability and the attainment of SDGs, the future research of sustainable smart city should explore the application and implications of AI and big data on urban development including cybersecurity and governance challenges.
Z. R. M. Abdullah KAISER , Apu DEB . Sustainable smart city and Sustainable Development Goals (SDGs): A review[J]. Regional Sustainability, 2025 , 6(1) : 100193 . DOI: 10.1016/j.regsus.2025.100193
| [1] | Abu-Rayash A., Dincer I., 2021. Development of integrated sustainability performance indicators for better management of smart cities. Sust. Cities Soc. 67, 102704, doi: 10.1016/j.scs.2020.102704. |
| [2] | Agboola O.P., Bashir F.M., Dodo Y.A., et al., 2023. The influence of information and communication technology (ICT) on stakeholders’ involvement and smart urban sustainability. Environ. Adv. 13, 100431, doi: 10.1016/j.envadv.2023.100431. |
| [3] | Agboola O.P., Findikgil M.M., 2023. A comparative framework analysis of the strategies, challenges and opportunities for sustainable smart cities. In: Sharma, R., Shishodia, A., Gupta, A., (eds.). Fostering Sustainable Development in the Age of Technologies. Leeds: Emerald Publishing Limited, 187-211. |
| [4] | Ahad M.A., Paiva S., Tripathi G., et al., 2020. Enabling technologies and sustainable smart cities. Sust. Cities Soc. 61, 102301, doi: 10.1016/j.scs.2020.102301. |
| [5] | Ahvenniemi H., Huovila A., Pinto-Sepp? I., et al., 2017. What are the differences between sustainable and smart cities? Cities. 60, 234-245. |
| [6] | Akande A., Cabral P., Gomes P., et al., 2019. The Lisbon ranking for smart sustainable cities in Europe. Sust. Cities Soc. 44, 475-487. |
| [7] | Al Nuaimi E., Al Neyadi H., Mohamed N., et al., 2015. Applications of big data to smart cities. J. Internet. Serv. Applications. 6, doi: 10.1186/s13174-015-0041-5. |
| [8] | Alavi A.H., Jiao P., Buttlar W.G., et al., 2018. Internet of things-enabled smart cities: State-of-the-art and future trends. Measurement. 129, 589-606. |
| [9] | Alazab M., Lakshmanna K., Reddy T., et al., 2021. Multi-objective cluster head selection using fitness averaged rider optimization algorithm for IoT networks in smart cities. Sustain. Energy Technol. Assess. 43, 100973, doi: 10.1016/j.seta.2020.100973. |
| [10] | Albino V., Berardi U., Dangelico R.M., 2015. Smart cities: Definitions, dimensions, performance, and initiatives. J. Urban. Technol. 22(1), 3-21. |
| [11] | Allam Z., Dhunny Z.A., 2019. On big data, artificial intelligence and smart cities. Cities. 89, 80-91. |
| [12] | Al-Raeei M., 2024. The smart future for sustainable development: Artificial intelligence solutions for sustainable urbanization. Sustain. Dev. doi: 10.1002/sd.3131. |
| [13] | Angelidou M., 2015. Smart cities: A conjuncture of four forces. Cities. 47, 95-106. |
| [14] | Angelidou M., Psaltoglou A., Komninos N., et al., 2018. Enhancing sustainable urban development through smart city applications. J. Sci. Technol. Policy Manag. 9(2), 146-169. |
| [15] | Anttiroiko A.V., Valkama P., Bailey S.J., 2014. Smart cities in the new service economy: Building platforms for smart services. AI Soc. 29, 323-334. |
| [16] | Bajdor P., Starostka-Patyk M., 2021. Smart city: A bibliometric analysis of conceptual dimensions and areas. Energies. 14(14), 4288, doi: 10.3390/en14144288. |
| [17] | Batty M., Axhausen K.W., Giannotti F., et al., 2012. Smart cities of the future. The European Physical Journal Special Topics. 214, 481-518. |
| [18] | Beck D., Ferasso M., Storopoli J., et al., 2023. Achieving the sustainable development goals through stakeholder value creation: Building up smart sustainable cities and communities. J. Clean Prod. 399, 136501, doi: 10.1016/j.jclepro.2023.136501. |
| [19] | Bhatnagar S., Sharma D., 2022. Evolution of green finance and its enablers: A bibliometric analysis. Renew. Sustain. Energ. Rev. 162, 112405, doi: 10.1016/j.rser.2022.112405. |
| [20] | Bibri S.E., Krogstie J., 2017. Smart sustainable cities of the future: An extensive interdisciplinary literature review. Sust. Cities Soc. 31, 183-212. |
| [21] | Bibri S.E., 2018. The IoT for smart sustainable cities of the future: An analytical framework for sensor-based big data applications for environmental sustainability. Sust. Cities Soc. 38, 230-253. |
| [22] | Bifulco F., Tregua M., Amitrano C.C., et al., 2016. ICT and sustainability in smart cities management. Int. J. Public Sect. Manag. 29(2), 132-147. |
| [23] | Birkle C., Pendlebury D.A., Schnell J., et al., 2020. Web of Science as a data source for research on scientific and scholarly activity. Quant. Sci. Stud. 1(1), 363-376. |
| [24] | Blasi S., Ganzaroli A., De Noni I., 2022. Smartening sustainable development in cities: Strengthening the theoretical linkage between smart cities and SDGs. Sust. Cities Soc. 80, 103793, doi: 10.1016/j.scs.2022.103793. |
| [25] | Capdevila I., Zarlenga M.I., 2015. Smart city or smart citizens? The Barcelona case. J. Strategy Manag. 8(3), 266-282. |
| [26] | Caragliu A., Del Bo C., Nijkamp P., 2011. Smart cities in Europe. J. Urban Technol. 18(2), 65-82. |
| [27] | Castelnovo W., Misuraca G., Savoldelli A., 2016. Smart cities governance: The need for a holistic approach to assessing urban participatory policy making. Soc. Sci. Comput. Rev. 34(6), 724-739. |
| [28] | Chehri A., Mouftah H.T., 2019. Autonomous vehicles in the sustainable cities, the beginning of a green adventure. Sust. Cities Soc. 51, 101751, doi: 10.1016/j.scs.2019.101751. |
| [29] | Chen Y.H., Han D.W., 2018. Water quality monitoring in smart city: A pilot project. Autom. Constr. 89, 307-316. |
| [30] | Chourabi H., Nam T., Walker S., et al., 2012. Understanding smart cities: An integrative framework. In: 2012 45th Hawaii International Conference on System Sciences. Hawaii: IEEE, 2289-2297. |
| [31] | Culnan M.J., 1986. The intellectual development of management information systems, 1972-1982: A co-citation analysis. Manage. Sci. 32(2), 156-172. |
| [32] | Dameri R.P., Benevolo C., Veglianti E., et al., 2019. Understanding smart cities as a global strategy: A comparison between Italy and China. Technol. Forecast. Soc. Change. 142, 26-41. |
| [33] | Datta A., 2015. New urban utopias of postcolonial India: ‘Entrepreneurial urbanization’ in Dholera smart city, Gujarat. Dialogues Hum. Geogr. 5(1), 3-22. |
| [34] | De Chardon C.M., 2019. The contradictions of bike-share benefits, purposes and outcomes. Transp. Res. Pt. A-Policy Pract. 121, 401-419. |
| [35] | De Guimar?es J.C.F., Severo E.A., Júnior L.A.F., et al., 2020. Governance and quality of life in smart cities: Towards sustainable development goals. J. Clean Prod. 253, 119926, doi: 10.1016/j.jclepro.2019.119926. |
| [36] | De Jong M., Joss S., Schraven D., et al., 2015. Sustainable-smart-resilient-low carbon-eco-knowledge cities; making sense of a multitude of concepts promoting sustainable urbanization. J. Clean Prod. 109, 25-38. |
| [37] | Deb A., Chen C., 2024. Mapping the field of climate finance research: A bibliometric analysis. J. Sustain. Finance Invest. 1-23. |
| [38] | Deb A., Sultana H., 2024. Urban resilience: Assessment of performance and science mapping from a climate change perspective. Sustain. Environ. 10(1), 2388936, doi: 10.1080/27658511.2024.2388936. |
| [39] | Donthu N., Kumar S., Mukherjee D., et al., 2021. How to conduct a bibliometric analysis: An overview and guidelines. J. Bus. Res. 133, 285-296. |
| [40] | Ellegaard O., 2018. The application of bibliometric analysis: Disciplinary and user aspects. Scientometrics. 116(1), 181-202. |
| [41] | Gabrys J., 2014. Programming environments: Environmentality and citizen sensing in the smart city. Environ. Plan. D-Soc. Space. 32(1), 30-48. |
| [42] | Giffinger R., Fertner C., Kramar H., et al., 2007. City-ranking of European medium-sized cities. Cent. Reg. Sci. Vienna UT. 9(1), 1-12. |
| [43] | Gil-Garcia J.R., Zhang J., Puron-Cid G., 2016. Conceptualizing smartness in government: An integrative and multi-dimensional view. Gov. Inf. Q. 33(3), 524-534. |
| [44] | Guo Y.M., Huang Z.L., Guo J., et al., 2019. Bibliometric analysis on smart cities research. Sustainability. 11(13), 3606, doi: 10.3390/su11133606. |
| [45] | Haarstad H., 2017. Constructing the sustainable city: Examining the role of sustainability in the ‘smart city’ discourse. J. Environ. Pol. Plan. 19(4), 423-437. |
| [46] | Harrison C., Eckman B., Hamilton R., et al., 2010. Foundations for smarter cities. IBM J. Res. Dev. 54(4), 1-16. |
| [47] | Hoang A.T., Pham V.V., Nguyen X.P., 2021. Integrating renewable sources into energy system for smart city as a sagacious strategy towards clean and sustainable process. J. Clean Prod. 305, 127161, doi: 10.1016/j.jclepro.2021.127161. |
| [48] | H?jer M., Wangel J., 2015. Smart sustainable cities:Definition and challenges. In: Hilty, L.M., Aebischer, B., (eds.). ICT Innovations for Sustainability. Cham: Springer, 333-349. |
| [49] | Huovila A., Bosch P., Airaksinen M., 2019. Comparative analysis of standardized indicators for smart sustainable cities: What indicators and standards to use and when? Cities. 89, 141-153. |
| [50] | Islam M.M., Chowdhury M.A.M., Begum R.A., et al., 2022. A bibliometric analysis on the research trends of climate change effects on economic vulnerability. Environ. Sci. Pollut. Res. 29(39), 59300-59315. |
| [51] | Javed A.R., Shahzad F., Rehman S., et al., 2022. Future smart cities: Requirements, emerging technologies, applications, challenges, and future aspects. Cities. 129, 103794, doi: 10.1016/j.cities.2022.103794. |
| [52] | Joss S., Sengers F., Schraven D., et al., 2019. The smart city as global discourse: Storylines and critical junctures across 27 cities. J. Urban Technol. 26(1), 3-34. |
| [53] | Kaika M., 2017. ‘Don’t call me resilient again!’: the New Urban Agenda as immunology… or… what happens when communities refuse to be vaccinated with ‘smart cities’ and indicators. Environ. Urban. 29(1), 89-102. |
| [54] | Kaiser Z.R.M.A., 2023a. Failing to attain sustainable development in Bangladesh: A potential comprehensive strategy for sustainability. Sustain. Dev. 31(4), 3086-3101. |
| [55] | Kaiser Z.R.M.A., 2023b. Analysis of the livelihood and health of internally displaced persons due to riverbank erosion in Bangladesh. J. Migration Health. 7, 1-10. |
| [56] | Kaiser Z.R.M.A., 2024. Smart governance for smart cities and nations. Journal of Economy and Technology. 2, 216-234. |
| [57] | Kaiser Z.R.M.A., Sakil A.H., Akter F., 2024. Urban poverty:causes, current trends, consequences, and pathways to sustainable solutions. In: Baikady, R., Sajid, S.M., Przeperski, J., (eds.). The Palgrave Handbook of Global Social Problems. London: Palgrave Macmillan, 1-17. |
| [58] | Kitchin R., 2014. The real-time city? Big data and smart urbanism. GeoJournal. 79, 1-14. |
| [59] | Klopp J.M., Petretta D.L., 2017. The urban sustainable development goal: Indicators, complexity and the politics of measuring cities. Cities. 63, 92-97. |
| [60] | Kolesnichenko O., Mazelis L., Sotnik A., et al., 2021. Sociological modeling of smart city with the implementation of UN sustainable development goals. Sustain. Sci. 16(2), 581-599. |
| [61] | Konietzko J., Bocken N., Hultink E.J., 2019. Circular ecosystem innovation: An initial set of principles. J. Clean Prod. 253, 119942, doi: 10.1016/j.jclepro.2019.119942. |
| [62] | Kutty A.A., Abdella G.M., Kucukvar M., et al., 2020. A system thinking approach for harmonizing smart and sustainable city initiatives with United Nations sustainable development goals. Sustain. Dev. 28(5), 1347-1365. |
| [63] | Lazaroiu G.C., Roscia M., 2012. Definition methodology for the smart cities model. Energy. 47(1), 326-332. |
| [64] | Lee J.H., Hancock M.G., Hu M.C., 2014. Towards an effective framework for building smart cities: Lessons from Seoul and San Francisco. Technol. Forecast. Soc. Chang. 89, 80-99. |
| [65] | Lombardi P., Giordano S., Farouh H., et al., 2012. Modelling the smart city performance. Innovation: The European Journal of Social Science Research. 25(2), 137-149. |
| [66] | Long S., Lucey B., Kumar S., et al., 2022. Climate finance: What we know and what we should know? Journal of Climate Finance. 1, 100005, doi: 10.1016/j.jclimf.2023.100005. |
| [67] | Lytras M.D., Visvizi A., 2018. Who uses smart city services and what to make of it: Toward interdisciplinary smart cities research. Sustainability. 10(6), 1998, doi: 10.3390/su10061998. |
| [68] | March H., Ribera-Fumaz R., 2016. Smart contradictions: The politics of making Barcelona a self-sufficient city. Eur. Urban Reg. Stud. 23(4), 816-830. |
| [69] | Martin C.J., Evans J., Karvonen A., 2018. Smart and sustainable? Five tensions in the visions and practices of the smart-sustainable city in Europe and North America. Technol. Forecast. Soc. Change. 133, 269-278. |
| [70] | Meijer A., Bolívar M.P.R., 2016. Governing the smart city: A review of the literature on smart urban governance. Int. Rev. Adm. Sci. 82(2), 392-408. |
| [71] | Mele V., Belardinelli P., 2019. Mixed methods in public administration research: Selecting, sequencing, and connecting. J. Public Adm. Res. Theory. 29(2), 334-347. |
| [72] | Mensah J., 2019. Sustainable development: Meaning, history, principles, pillars, and implications for human action: Literature review. Cogent Soc. Sci. 5(1), 1653531, doi: 10.1080/23311886.2019.1653531. |
| [73] | Mora L., Deakin M., Reid A., 2019. Strategic principles for smart city development: A multiple case study analysis of European best practices. Technol. Forecast. Soc. Change. 142, 70-97. |
| [74] | Moreno C., Allam Z., Chabaud D., et al., 2021. Introducing the “15-Minute City”: Sustainability, resilience and place identity in future post-pandemic cities. Smart Cities. 4(1), 93-111. |
| [75] | Nam T., Pardo T.A., 2011. Conceptualizing smart city with dimensions of technology, people, and institutions. In: Proceedings of the 12th Annual International Digital Government Research Conference: Digital Government Innovation in Challenging Times. New York: Association for Computing Machinery, 282-291. |
| [76] | Neirotti P., De Marco A., Cagliano A.C., et al., 2014. Current trends in smart city initiatives: Some stylised facts. Cities. 38, 25-36. |
| [77] | Nie X.T., Fan T.Y., Wang B., et al., 2020. Big data analytics and IoT in operation safety management in under water management. Comput. Commun. 154, 188-196. |
| [78] | Niemi R., Mikkola J., Lund P., 2012. Urban energy systems with smart multi-carrier energy networks and renewable energy generation. Renew. Energy. 48, 524-536. |
| [79] | Olawumi T.O., Chan D.W., 2018. Identifying and prioritizing the benefits of integrating BIM and sustainability practices in construction projects: A Delphi survey of international experts. Sust. Cities Soc. 40, 16-27. |
| [80] | Olawumi T.O., Chan D.W., 2019. Critical success factors for implementing building information modeling and sustainability practices in construction projects: A Delphi survey. Sustain. Dev. 27(4), 587-602. |
| [81] | Papa A., Mital M., Pisano P., et al., 2020. E-health and wellbeing monitoring using smart healthcare devices: An empirical investigation. Technol. Forecast. Soc. Change. 153, 119226, doi: 10.1016/j.techfore.2018.02.018. |
| [82] | Perera C., Qin Y.R., Estrella J.C., et al., 2017. Fog computing for sustainable smart cities: A survey. ACM Comput. Surv. 50(3), 1-43. |
| [83] | Rom?o J., Kourtit K., Neuts B., et al., 2018. The smart city as a common place for tourists and residents: A structural analysis of the determinants of urban attractiveness. Cities. 78, 67-75. |
| [84] | Shang Q.Y., Jin X., 2023. A bibliometric analysis on climate finance: current status and future directions. Environ. Sci. Pollut. Res. 30, 119711-119732. |
| [85] | Sharifi A., 2021. Urban sustainability assessment: An overview and bibliometric analysis. Ecol. Indic. 121, 107102, doi: 10.1016/j.ecolind.2020.107102. |
| [86] | Sharifi A., Allam Z., Bibri S.E., et al., 2024. Smart cities and sustainable development goals (SDGs): A systematic literature review of co-benefits and trade-offs. Cities. 146, 104659, doi: 10.1016/j.cities.2023.104659. |
| [87] | Sharma P.K., Park J.H., 2018. Blockchain based hybrid network architecture for the smart city. Futur. Gener. Comp. Syst. 86, 650-655. |
| [88] | Shehab M.J., Kassem I., Kutty A.A., et al., 2021. 5G networks towards smart and sustainable cities: A review of recent developments, applications and future perspectives. IEEE Access. 10, 2987-3006. |
| [89] | Silva B.N., Khan M., Han K., 2018. Towards sustainable smart cities: A review of trends, architectures, components, and open challenges in smart cities. Sust. Cities Soc. 38, 697-713. |
| [90] | S?derstr?m O., Paasche T., Klauser F., 2014. Smart cities as corporate storytelling. City. 18(3), doi: 10.1080/13604813.2014.906716. |
| [91] | Sodiq A., Baloch A.A., Khan S.A., et al., 2019. Towards modern sustainable cities: Review of sustainability principles and trends. J. Clean Prod. 227, 972-1001. |
| [92] | Son T.H., Weedon Z., Yigitcanlar T., et al., 2023. Algorithmic urban planning for smart and sustainable development: Systematic review of the literature. Sust. Cities Soc. 94, 104562, doi: 10.1016/j.scs.2023.104562. |
| [93] | Toh C.K., 2022. Smart city indexes, criteria, indicators and rankings: An in-depth investigation and analysis. IET Smart Cities. 4(3), 211-228. |
| [94] | Trujillo C.M., Long T.M., 2018. Document co-citation analysis to enhance transdisciplinary research. Sci. Adv. 4(1), e1701130, doi: 10.1126/sciadv.1701130. |
| [95] | UN (United Nations), 2024a. 68% of The World Population Projected to Live in Urban Areas by 2050. [2024-07-26]. https://www.un.org/development/desa/en/news/population/2018-revision-of-world-urbanization-prospects.html. |
| [96] | UN, 2024b. Sustainable Development. [2024-08-08]. https://sdgs.un.org/goals. |
| [97] | Vanolo A., 2014. Smartmentality: The smart city as disciplinary strategy. Urban Stud. 51(5), 883-898. |
| [98] | Villegas-Ch W., Palacios-Pacheco X., Luján-Mora S., 2019. Application of a smart city model to a traditional university campus with a big data architecture: A sustainable smart campus. Sustainability. 11(10), 2857, doi: 10.3390/su11102857. |
| [99] | Visvizi A., Lytras M.D., 2018. Rescaling and refocusing smart cities research: From mega cities to smart villages. J. Sci. Technol. Policy Manag. 9(2), 134-145. |
| [100] | Vlacheas P., Giaffreda R., Stavroulaki V., et al., 2013. Enabling smart cities through a cognitive management framework for the internet of things. IEEE Commun. Mag. 51(6), 102-111. |
| [101] | Wang B., Loo B.P., Huang G., 2022. Becoming smarter through smart city pilot projects: Experiences and lessons from China since 2013. J. Urban Technol. 29(4), 3-24. |
| [102] | World Commission on Environment and Development, 1987. Report of the World Commission on Environment and Development: United Nations. [2024-07-01]. https://digitallibrary.un.org/record/139811?v=pdf. |
| [103] | Wu Z.Z., Jiang M.Y., Li H., et al. 2022. Mapping the knowledge domain of smart city development to urban sustainability: A scientometric study. J. Urban Technol. 28(1-2), 29-53. |
| [104] | Yau K.A., Peng S., Qadir J., et al., 2020. Towards smart port infrastructures: Enhancing port activities using information and communications technology. IEEE Access. 8, 83387-83404. |
| [105] | Yigitcanlar T., Kamruzzaman M., 2018. Does smart city policy lead to sustainability of cities? Land Use Pol. 73, 49-58. |
| [106] | Yigitcanlar T., Kamruzzaman M., Buys L., et al., 2018. Understanding ‘smart cities’: Intertwining development drivers with desired outcomes in a multidimensional framework. Cities. 81, 145-160. |
| [107] | Yigitcanlar T., Kamruzzaman M., Foth M., et al., 2019. Can cities become smart without being sustainable? A systematic review of the literature. Sust. Cities Soc. 45, 348-365. |
| [108] | Yigitcanlar T., Senadheera S., Marasinghe R., et al., 2024. Artificial intelligence and the local government: A five-decade scientometric analysis on the evolution, state-of-the-art, and emerging trends. Cities. 152, 105151, doi: 10.1016/j.cities.2024.105151. |
| [109] | Zhang J., Xie J., Hou W.L., et al., 2012. Mapping the knowledge structure of research on patient adherence: Knowledge domain visualization based co-word analysis and social network analysis. PloS One. 7(4), e34497, doi: 10.1371/journal.pone.0034497. |
| [110] | Zhao L., Tang Z.Y., Zou X., 2019. Mapping the knowledge domain of smart-city research: A bibliometric and scientometric analysis. Sustainability. 11(23), 6648, doi: 10.3390/su11236648. |
| [111] | Zygiaris S., 2013. Smart city reference model: Assisting planners to conceptualize the building of smart city innovation ecosystems. J. Knowl. Econ. 4, 217-231. |
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