[1]https://assets.publishing.service.gov.uk/government/uploads/system/uploads/attachment_data/file/1
107456/Energy_Trends_September_2022.pdf
[2] https://www.iea.org/news/world-energy-outlook-2022-shows-the-global-energy-crisis-can-be-ahistoric-
turning-point-towards-a-cleaner-and-more-secure-future
[3] Report, International Energy Outlook 2021 (IEO2021), Available:
https://www.eia.gov/outlooks/ieo/
[4] S.-E. Razavi, E. Rahimi, M. S. Javadi, A. E. Nezhad, M. Lotfi, M. Shafie-khah, et al., "Impact of
distributed generation on protection and voltage regulation of distribution systems: A review,"
Renewable and Sustainable Energy Reviews, vol. 105, pp. 157-167, 2019.
[5] F. M. Nuroglu and A. B. Arsoy, "Voltage profile and short circuit analysis in distribution systems
with DG," in 2008 IEEE Canada Electric Power Conference, 2008, pp. 1-5.
[6] E. Coster, J. Myrzik, and W. Kling, "Effect of DG on distribution grid protection," Distributed
generation, vol. 2, 2010.
[7] S. Ullah, A. M. Haidar, P. Hoole, H. Zen, and T. Ahfock, "The current state of Distributed Renewable
Generation, challenges of interconnection and opportunities for energy conversion based DC
microgrids," Journal of Cleaner Production, p. 122777, 2020.
[8] Othman, M. M., Hegazy, Y., Abdelaziz, A. Y., "A Review of virtual power plant definitions,
components, framework and optimization," International Electrical Engineering Journal, vol. 6, pp.
2010-2024, 2015.
[9] Badran O, Mekhilef S, Mokhlis H, Dahalan W (2017) Optimal reconfiguration of distribution system
connected with distributed generations: A review of different methodologies Renewable and
Sustainable Energy Reviews 73: 854-867
[10] Solat, S., Aminifar, F., & Shayanfar, H. (2020). Distributed generation hosting capacity in electric
distribution network in the presence of correlated uncertainties. IET Generation, Transmission &
Distribution, 15(5), 836-848.
[11] Tonkoski, R., Turcotte, D., and El-Fouly, T. H. M., “Impact of high PV penetration on voltage
profiles in residential neighborhoods”, IEEE Transactions on Sustainable Energy, vol. 3, no. 3, pp.
518-52, 2012.
[12] Kavousi-Fard, A., Niknam, T., and Fotuhi-Firuzabad, M., “Stochastic reconfiguration and optimal
coordination of V2G plug-in electric vehicles considering correlated wind power generation”, IEEE
Transactions on Sustainable Energy, vol.6, no.3, pp.822-830, 2015.
[13] Jabari, F, Seyedi, H, Najafi Ravadanegh, S, Mohammadi-Ivatloo, B. “Multi-objective optimal
preventive islanding based on stochastic backward elimination strategy considering uncertainties
of loads and wind farms,” International Transactions on Electrical Energy Systems, 27:e2451, 2017,
https://doi.org/10.1002/etep.2451.
[14] Ghofrani, M., et al., “A Framework for Optimal Placement of Energy Storage Units Within a Power
System With High Wind Penetration,” IEEE Transactions on Sustainable Energy, vol. 4, no. 2, pp.
434-442, 2013.
[15] Guo, Z., Lei, S., Wang, Y., Zhou, Z., Zhou, Y., “Dynamic distribution network reconfiguration
considering travel behaviors and battery degradation of electric vehicles,” IEEE Power & Energy
Society General Meeting, Chicago, IL, pp. 1-5, 2017.
[16] J. Tabatabaei, M. S. Moghaddam and J. M. Baigi, "Rearrangement of Electrical Distribution
Networks With Optimal Coordination of Grid-Connected Hybrid Electric Vehicles and Wind
Power Generation Sources," in IEEE Access, vol. 8, pp. 219513-219524, 2020
[17] Xing, H., Sun, X., “Distributed Generation Locating and Sizing in Active Distribution Network
Considering Network Reconfiguration,” IEEE Access, vol. 5, pp. 14768-14774, 2017.
[18] Koutsoukis, N.C., Siagkas, D.O., Georgilakis, P.S., Hatziargyriou, N.D., “Online Reconfiguration
of Active Distribution Networks for Maximum Integration of Distributed Generation,” IEEE
Transactions on Automation Science and Engineering, vol. 14, no. 2, pp. 437-448, April 2017.
[19] Kavousi-Fard, A., Khodaei, A., “Efficient integration of plug-in electric vehicles via reconfigurable
microgrids,” Energy, vol. 111, pp. 653-663, 2016.
[20] Sedighizadeh M, Shaghaghi-shahr G, Esmaili M, Aghamohammadi MR, “Optimal distribution
feeder reconfiguration and generation scheduling for microgrid day-ahead operation in the presence
of electric vehicles considering uncertainties”, Journal of Energy Storage, vol. 21, pp. 58–71, 2019.
[21] S. Wang, S. Chen, L. Ge and L. Wu, "Distributed Generation Hosting Capacity Evaluation for
Distribution Systems Considering the Robust Optimal Operation of OLTC and SVC," in IEEE
Transactions on Sustainable Energy, vol. 7, no. 3, pp. 1111-1123, July 2016.
[22] H. Wu, Y. Yuan, J. Zhu, K. Qian and Y. Xu, "Potential Assessment of Spatial Correlation to
Improve Maximum Distributed PV Hosting Capacity of Distribution Networks," in Journal of
Modern Power Systems and Clean Energy, vol. 9, no. 4, pp. 800-810, July 2021,
[23] Vita, V. “Development of a Decision-Making Algorithm for the Optimum Size and Placement of
Distributed Generation Units in Distribution Networks”, Energies, Vol. 10, No. 9, 1433, 2017.
doi:10.3390/en10091433.
[24] Čađenović, R., & Jakus, D., “Maximization of Distribution Network Hosting Capacity through
Optimal Grid Reconfiguration and Distributed Generation Capacity Allocation/Control”, Energies,
Vol. 13, No. 20, 5315, 2020. DOI:10.3390/en13205315 .
[25] S. Wang, Y. Dong, L. Wu and B. Yan, "Interval Overvoltage Risk Based PV Hosting Capacity
Evaluation Considering PV and Load Uncertainties," in IEEE Transactions on Smart Grid, vol. 11,
no. 3, pp. 2709-2721, May 2020, doi: 10.1109/TSG.2019.2960335.
[26] Pirouzi, S., Latify, M. A., & Yousefi, G. R., “Conjugate active and reactive power management in
a smart distribution network through electric vehicles: A mixed integer-linear programming
model”, Sustainable Energy, Grids and Networks, Vol. 22, 100344, 2020.
doi:10.1016/j.segan.2020.100344.
[27] M.E. Baran, F.F. Wu, “Network reconfiguration in distribution systems for loss reduction and load
balancing,” IEEE Transactions on Power Delivery, Vol. 4, No. 2, April 1989.
[28] Alireza Heidari, Vassilios G Agelidis, Mohsen Kia, “Considerations of sectionalizing switches in
distribution networks with distributed generation,” IEEE Transactions on Power Delivery, Vol. 30,
No. 3, pp. 1401-1409, 2014.
[29] Mohammad H Shams, Majid Shahabi, Mohsen Kia, Alireza Heidari, Mohamed Lotfi, Miadreza
Shafie-Khah, João PS Catalão, “Optimal operation of electrical and thermal resources in microgrids
with energy hubs considering uncertainties,” Energy, Vol. 187, 2019.
[30] Zakariazadeh A, Jadid S, Siano P., “Economic-environmental energy and reserve scheduling of
smart distribution systems: a multi objective mathematical programming approach,” Energy
Convers Manag, Vol. 78, pp. 151-164, 2014.
[31] Heitsch, H., and Romisch, W., “Scenario reduction algorithms in stochastic programming,”
Computational Optimization and Applications, Vol. 24, pp. 187–206, 2003.
[32] Heitsch, H., and Romisch, W., “Scenarios for Multistage Stochastic Programs,” Annals of
Operations Research, Vol. 100, pp. 25–53, 2000.
[33] N. Growe-Kuska, H. Heitsch , W. Romisch, “Scenario reduction and scenario tree construction for
power management problems,” 2003 IEEE Bologna Power Tech Conference Proceedings, Bologna,
Italy, June 2003.
[34] A. J. Conejo, M. Carriâon, and J. M. Morales, “Decision making under uncertainty in electricity
markets,” Vol. 153: Springer, 2010.