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Research Article

Economic efficiency and energy security of smart cities

, , ORCID Icon &
Pages 788-803 | Received 11 Oct 2019, Accepted 20 Feb 2020, Published online: 25 Mar 2020

References

  • Al-Badi, A. H., Ahshan, R., Hosseinzadeh, N., Ghorbani, R., & Hossain, E. (2020). Survey of smart grid concepts and technological demonstrations worldwide emphasizing on the Oman perspective. Applied System Innovation, 3(1), 5. doi:10.3390/asi3010005
  • Alstone, P., & Jacobson, A. (2018). LED advances accelerate universal access to electric lighting. Comptes Rendus Physique, 19(3), 146–158. doi:10.1016/j.crhy.2017.10.015
  • Barba-Sánchez, V., Arias-Antúnez, E., & Orozco-Barbosa, L. (2019). Smart cities as a source for entrepreneurial opportunities: Evidence for Spain. Technological Forecasting and Social Change, 148, 119713. doi:10.1016/j.techfore.2019.119713
  • 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. Sustainable Cities and Society, 38, 230–253. doi:10.1016/j.scs.2017.12.034
  • Bünning, F., Wetter, M., Fuchs, M., & Müller, D. (2018). Bidirectional low temperature district energy systems with agent-based control: Performance comparison and operation optimization. Applied Energy, 209, 502–515. doi:10.1016/j.apenergy.2017.10.072
  • BV. (2018). Smart cities and utilities report. Retrieved from https://www.bv.com/sites/default/files/gated-content/strategic-directions-report/18-SDR-Smart-Cities-Utilities.pdf
  • De la Hoz-Rosales, B., Camacho, J., & Tamayo, I. (2019). Effects of innovative entrepreneurship and the information society on social progress: An international analysis. Entrepreneurship and Sustainability Issues, 7(2), 782–813. doi:10.9770/jesi.2019.7.2(1)
  • Deveci, M., Pekaslan, D., & Canıtez, F. (2020). The assessment of smart city projects using zSlice type-2 fuzzy sets based interval agreement method. Sustainable Cities and Society, 53, 101889. doi:10.1016/j.scs.2019.101889
  • Drozdova, I., & Petrov, A. (2018). World practice and Russian experience of housing and utilities sector digitization. SHS Web of Conferences, 44, 00031. doi:10.1051/shsconf/20184400031
  • Dudin, M. N., Frolova, E. E., Protopopova, O. V., Mamedov, A. A., & Odintsov, S. V. (2019). Study of innovative technologies in the energy industry: Nontraditional and renewable energy sources. Entrepreneurship and Sustainability Issues, 6(4), 1704–1713. doi:10.9770/jesi.2019.6.4(11)
  • El Iysaouy, L., El Idrissi, N. E., Tvaronavičienė, M., Lahbabi, M., & Oumnad, A. (2019). Towards energy efficiency: Case of Morocco. Insights into Regional Development, 1(3), 259–271. doi:10.9770/ird.2019.1.3(6)
  • Esmaeilian, B., Wang, B., Lewis, K., Duarte, F., Ratti, C., & Behdad, S. (2018). The future of waste management in smart and sustainable cities: A review and concept paper. Waste Management, 81, 177–195. doi:10.1016/j.wasman.2018.09.047
  • Farzaneh, H., Doll, C. N., & De Oliveira, J. A. P. (2016). An integrated supply-demand model for the optimization of energy flow in the urban system. Journal of Cleaner Production, 114, 269–285. doi:10.1016/j.jclepro.2015.05.098
  • Filimonova, A. A., Barbasova, T. A., & Shnayder, D. A. (2017). Outdoor Lighting System Upgrading Based on Smart Grid Concept. Energy Procedia., 111, 678–688. doi:10.1016/j.egypro.2017.03.230
  • Glazebrook, G., & Newman, P. (2018). The city of the future. Urban Planning, 3(2), 1–20. doi:10.17645/up.v3i2.1247
  • Greenbusinesslight. (2019). Lux, lumen sand Watts: Our guide. Retrieved from https://greenbusinesslight.com/resources/lighting-lux-lumens-watts
  • Gulati, N., & Kaur, P. D. (2019). Towards socially enabled internet of industrial things: Architecture, semantic model and relationship management. Ad Hoc Networks, 91, 101869. doi:10.1016/j.adhoc.2019.101869
  • He, J., Pan, Y., Liang, B., & Wang, C. (2018). A simple decentralized islanding microgrid power sharing method without using droop control. IEEE Transactions on Smart Grid, 9(6), 6128–6139. doi:10.1109/TSG.2017.2703978
  • Hefnawy, A., Bouras, A., & Cherifi, C. (2016). IoT for smart city services: Lifecycle approach. In Proceedings of The International Conference on Internet of Things and Cloud Computing, p. 55. Retrieved from https://dl.acm.org/citation.cfm?id=2896440 doi:10.1145/2896387.2896440
  • Jin, D., Hannon, C., Li, Z., Cortes, P., Ramaraju, S., Burgess, P., … Shahidehpour, M. (2016). Smart street lighting system: A platform for innovative smart city applications and a new frontier for cyber-security. The Electricity Journal, 29(10), 28–35. doi:10.1016/j.tej.2016.11.011
  • Jindal, A., Kumar, N., & Singh, M. (2018). A unified framework for big data acquisition, storage, and analytics for demand response management in smart cities. Future Generation Computer Systems. doi:10.1016/j.future.2018.02.039
  • Li, K., D., Cursio, J., Sun, Y., & Zhu, Z. (2019). Determinants of price fluctuations in the electricity market: A study with PCA and NARDL models. Economic research-Ekonomska Istraživanja, 32(1), 2404–2421. doi:10.1080/1331677X.2019.1645712
  • Lobaccaro, G., Croce, S., Lindkvist, C., Munari Probst, M. C., Scognamiglio, A., Dahlberg, J., … Wall, M. (2019). A cross-country perspective on solar energy in urban planning: Lessons learned from international case studies. Renewable and Sustainable Energy Reviews, 108, 209–237. doi:10.1016/j.rser.2019.03.041
  • Machado, F. A., Peserico, C. S., Mezzaroba, P. V., Manoel, F. A., & da Silva, D. F. (2017). Light-emitting diodes (LED) therapy applied between two running time trials has a moderate effect on attenuating delayed onset muscle soreness but does not change recovery markers and running performance. Science & Sports, 32(5), 286–294. doi:10.1016/j.scispo.2016.06.010
  • Madu, C. N., Kuei, C. H., & Lee, P. (2017). Urban sustainability management: A deep learning perspective. Sustainable Cities and Society, 30, 1–17. doi:10.1016/j.scs.2016.12.012
  • Minoli, D., Sohraby, K., & Occhiogrosso, B. (2017). IoT considerations, requirements, and architectures for smart buildings-Energy optimization and next-generation building management systems. IEEE Internet of Things Journal, 4(1), 269–283. doi:10.1109/JIOT.2017.2647881
  • Mirkovic, M., & Alawadi, K. (2017). The effect of urban density on energy consumption and solar gains: The study of Abu Dhabi’s neighborhood. Energy Procedia, 143, 277–282. doi:10.1016/j.egypro.2017.12.684
  • Mohandas, P., Anni, J. S., & Gao, X.-Z. (2019). Artificial neural network based smart and energy efficient street lighting system: A case study for residential area in Hosur. Sustainable Cities and Society, 48, 101499. doi:10.1016/j.scs.2019.101499
  • O’Dwyer, E., Pan, I., Acha, S., & Shah, N. (2019). Smart energy systems for sustainable smart cities: Current developments, trends and future directions. Applied Energy, 237, 581–597. doi:10.1016/j.apenergy.2019.01.024
  • Park, S., Kang, B., Choi, M., Jeon, S., & Park, S. (2018). A micro-distributed ESS-based smart LED streetlight system for intelligent demand management of the micro grid. Sustainable Cities and Society, 39, 801–813. doi:10.1016/j.scs.2017.10.023
  • Pereira dos Reis, V., Macedo Tavares, M. N., Alves Rego, C. M., Ferreira e Ferreira, A. A., da Silva Setubal, S., Soares, A. M., … Zuliani, J. P. (2019). Light emitting diode (LED) photobiomodulation therapy on murine macrophage exposed to Bothropstoxin-I and Bothropstoxin-II myotoxins. Toxicon, 172, 45–52. doi:10.1016/j.toxicon.2019.10.243
  • Petrenko, Y., Vechkinzova, E., & Antonov, V. (2019). Transition from the industrial clusters to the smart specialization of the regions in Kazakhstan. Insights into Regional Development, 1(2), 118–128. doi:10.9770/ird.2019.1.2(3)
  • Petritoli, E., Leccese, F., Pizzuti, S., & Pieroni, F. (2019). Smart lighting as basic building block of smart city: An energy performance comparative case study. Measurement, 136, 466–477. doi:10.1016/j.measurement.2018.12.095
  • Praharaj, S., & Han, H. (2019). Cutting through the clutter of smart city definitions: A reading into the smart city perceptions in India. City, Culture and Society, 18, 100289. doi:10.1016/j.ccs.2019.05.005
  • Ragulina, Y. V., Semenova, E. I., Zueva, I. A., Kletskova, E. V., & Belkina, E. N. (2018). Perspectives of solving the problems of regional development with the help of new internet technologies. Entrepreneurship and Sustainability Issues, 5(4), 890–898. doi:10.9770/jesi.2018.5.4(13)
  • Sarma, U., Karnitis, G., Zuters, J., & Karnitis, E. (2019). District heating networks: Enhancement of the efficiency. Insights into Regional Development, 1(3), 200–213. doi:10.9770/ird.2019.1.3(2)
  • Smaliukienė, R., & Monni, S. (2019). A step-by-step approach to social marketing in energy transition. Insights into Regional Development, 1(1), 19–32. doi:10.9770/ird.2019.1.1(2)
  • Snieska, V., Zykiene, I., & Burksaitiene, D. (2019). Evaluation of location’s attractiveness for business growth in smart development. Economic research-Ekonomska Istraživanja, 32(1), 925–946. doi:10.1080/1331677X.2019.1590217
  • Sousa, M. J., Melé, P. M., & Gómez, J. M. (2020). Technology, Governance, and a Sustainability Model for Small and Medium-Sized Towns in Europe. Sustainability, 12(3), 884. doi:10.3390/su12030884
  • Statista. (2019). Worldwide number of battery electric vehicles in use from 2012 to 2018. Retrieved from https://www.statista.com/statistics/270603/worldwide-number-of-hybrid-and-electric-vehicles-since-2009
  • Strielkowski, W. (2017). Social and economic implications for the smart grids of the future. Economics & Sociology, 10(1), 310–318. doi:10.14254/2071-789X.2017/10-1/22
  • Su, Y. (2019). Smart energy for smart built environment: A review for combined objectives of affordable sustainable green. Sustainable Cities and Society, 101954. doi:10.1016/j.scs.2019.101954
  • Taveres-Cachat, E., Grynning, S., Thomsen, J., & Selkowitz, S. (2019). Responsive building envelope concepts in zero emission neighborhoods and smart cities - A roadmap to implementation. Building and Environment, 149, 446–457. doi:10.1016/j.buildenv.2018.12.045
  • Timebie. (2019). Sunrise sunset daylight hours. Retrieved from http://www.timebie.com/sun
  • Tvaronavičienė, M. (2018). Towards sustainable and secure development: Energy efficiency peculiarities in transport sector. Journal of Security and Sustainability Issues, 7(4), 719–725. doi:10.9770/jssi.2018.7.4(9)
  • Tvaronavičiene, M., & Slusarczyk, B. (Eds.). (2019). Energy transformation towards sustainability (1st ed.). Elsevier, p. 348.
  • Urbaniec, K., Mikulčić, H., Rosen, M. A., & Duić, N. (2017). A holistic approach to sustainable development of energy, water and environment systems. Journal of Cleaner Production, 155, 1–11. doi:10.1016/j.jclepro.2017.01.119
  • Van Winden, W. (2016, April 3–6). Smart city pilot projects, scaling up or fading out? Experiences from Amsterdam. In Regional Studies Association Annual Conference, Austria, Graz. Retrieved from https://pure.hva.nl/ws/files/811939/RSA_paper_upscaling_RG.pdf
  • Vlasov, A. I., Shakhnov, V. A., Filin, S. S., & Krivoshein, A. I. (2019). Sustainable energy systems in the digital economy: Concept of smart machines. Entrepreneurship and Sustainability Issues, 6(4), 1975–1986. doi:10.9770/jesi.2019.6.4(30)
  • Wang, P., Sun, J., Jiang, Q., & Li, T. (2017). Cooling-controlled and reliable driving module for low-level light therapy LED helmet. Microelectronics Reliability, 78, 370–373. doi:10.1016/j.microrel.2017.09.021
  • Zeibote, Z., Volkova, T., & Todorov, K. (2019). The impact of globalization on regional development and competitiveness: Cases of selected regions. Insights into Regional Development, 1(1), 33–47. doi:10.9770/ird.2019.1.1(3)