Smart Charging Solutions for Hybrid and Electric Vehicles
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- Название:Smart Charging Solutions for Hybrid and Electric Vehicles
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Smart Charging Solutions for Hybrid and Electric Vehicles: краткое содержание, описание и аннотация
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4. I. Sharma, C. Canizares, and K. Bhattacharya, “Smart charging of PEVs penetrating into residential distribution systems,” IEEE Transactions on Smart Grid, vol. 5, no. 3, pp. 1196-1209, 2014.
5. M. G. Vaya, and G. Andersson, “Centralized and decentralized approaches to smart charging of plug-in vehicles.” pp. 1-8.
6. B. Sah, P. Kumar, R. Rayudu, S. K. Bose, and K. P. Inala, “Impact of sampling in the operation of vehicle to grid and its mitigation,” IEEE Transactions on Industrial Informatics, vol. 15, no. 7, pp. 3923-3933, 2018.
7. Q. Wang, X. Liu, J. Du, and F. Kong, “Smart charging for electric vehicles: A survey from the algorithmic perspective,” IEEE Communications Surveys & Tutorials, vol. 18, no. 2, pp. 1500-1517, 2016.
8. S. Han, S. Han, and K. Sezaki, “Development of an optimal vehicle-to-grid aggregator for frequency regulation,” IEEE Transactions on smart grid, vol. 1, no. 1, pp. 65-72, 2010.
9. H. Das, M. Rahman, S. Li, and C. Tan, “Electric vehicles standards, charging infrastructure, and impact on grid integration: A technological review,” Renewable and Sustainable Energy Reviews, vol. 120, pp. 109618, 2020.
10. J. García-Villalobos, I. Zamora, J. I. San Martín, F. J. Asensio, and V. Aperribay, “Plug-in electric vehicles in electric distribution networks: A review of smart charging approaches,” Renewable and Sustainable Energy Reviews, vol. 38, pp. 717-731, 2014.
11. E. Akhavan-Rezai, M. Shaaban, E. El-Saadany, and A. Zidan, “Uncoordinated charging impacts of electric vehicles on electric distribution grids: Normal and fast charging comparison.” pp. 1-7.
12. M. Muratori, “Impact of uncoordinated plug-in electric vehicle charging on residential power demand,” Nature Energy, vol. 3, no. 3, pp. 193-201, 2018.
13. R. A. Verzijlbergh, M. O. Grond, Z. Lukszo, J. G. Slootweg, and M. D. Ilic, “Network impacts and cost savings of controlled EV charging,” IEEE transactions on Smart Grid, vol. 3, no. 3, pp. 1203-1212, 2012.
14. R.-C. Leou, C.-L. Su, and C.-N. Lu, “Stochastic analyses of electric vehicle charging impacts on distribution network,” IEEE Transactions on Power Systems, vol. 29, no. 3, pp. 1055–1063, 2013.
15. M. Singh, P. Kumar, and I. Kar, “Implementation of vehicle to grid infrastructure using fuzzy logic controller,” IEEE Transactions on Smart Grid, vol. 3, no. 1, pp. 565-577, 2012.
16. S. Paudyal, O. Ceylan, B. P. Bhattarai, and K. S. Myers, “Optimal coordinated EV charging with reactive power support in constrained distribution grids.” pp. 1-5.
17. Y. Zhang, H. Yu, C. Huang, W. Zhao, and M. Luo, “Coordination of Electric Vehicles Charging to Maximize Economic Benefits.” pp. 508-517.
18. J. Hu, S. You, M. Lind, and J. Østergaard, “Coordinated charging of electric vehicles for congestion prevention in the distribution grid,” IEEE Transactions on Smart Grid, vol. 5, no. 2, pp. 703-711, 2013.
19. M. F. Shaaban, A. A. Eajal, and E. F. El-Saadany, “Coordinated charging of plug-in hybrid electric vehicles in smart hybrid AC/DC distribution systems,” Renewable Energy, vol. 82, pp. 92-99, 2015/10/01/, 2015.
20. B. Sah, P. Kumar, and S. K. Bose, “A Fuzzy Logic and Artificial Neural Network-Based Intelligent Controller for a Vehicle-to-Grid System,” IEEE Systems Journal , 2020.
21. A. S. Masoum, A. Abu-Siada, and S. Islam, “Impact of uncoordinated and coordinated charging of plug-in electric vehicles on substation transformer in smart grid with charging stations.” pp. 1-7.
22. A. Dubey, and S. Santoso, “Electric vehicle charging on residential distribution systems: Impacts and mitigations,” IEEE Access, vol. 3, pp. 1871-1893, 2015.
23. D. Oliveira, A. Z. De Souza, and L. Delboni, “Optimal plug-in hybrid electric vehicles recharge in distribution power systems,” Electric Power Systems Research, vol. 98, pp. 77–85, 2013.
24. S. Deilami, A. S. Masoum, P. S. Moses, and M. A. Masoum, “Real-time coordination of plug-in electric vehicle charging in smart grids to minimize power losses and improve voltage profile,” IEEE Transactions on Smart Grid, vol. 2, no. 3, pp. 456–467, 2011.
25. E. Sortomme, M. M. Hindi, S. J. MacPherson, and S. Venkata, “Coordinated charging of plug-in hybrid electric vehicles to minimize distribution system losses,” IEEE transactions on smart grid, vol. 2, no. 1, pp. 198–205, 2010.
26. Å. L. Sørensen, S. Jiang, B. N. Torsæter, and S. Völler, “Smart ev charging systems for zero emission neighbourhoods,” 2018.
27. J. J. A. Saldanha, E. M. Dos Santos, A. P. C. De Mello, and D. P. Bernardon, “Control strategies for smart charging and discharging of plug-in electric vehicles,” Smart Cities Technologies, vol. 1, 2016.
28. K. Valentine, W. G. Temple, and K. M. Zhang, “Intelligent electric vehicle charging: Rethinking the valley-fill,” Journal of Power Sources, vol. 196, no. 24, pp. 10717-10726, 2011.
29. A. Zakariazadeh, S. Jadid, and P. Siano, “Multi-objective scheduling of electric vehicles in smart distribution system,” Energy Conversion and Management, vol. 79, pp. 43-53, 2014.
30. J. P. Lopes, P. R. Almeida, and F. J. Soares, “Using vehicle-to-grid to maximize the integration of intermittent renewable energy resources in islanded electric grids.” pp. 290-295.
31. M. Tokudome, K. Tanaka, T. Senjyu, A. Yona, T. Funabashi, and C.-H. Kim, “Frequency and voltage control of small power systems by decentralized controllable loads.” pp. 666-671.
32. I. Outlook, “Smart Charging for Electric Vehicles,” Available online:/publications/2019/May/Innovation-Outlook-Smart-Charging (accessed on April 28th 2020), 2019.
33. A. Di Giorgio, F. Liberati, and S. Canale, “Electric vehicles charging control in a smart grid: A model predictive control approach,” Control Engineering Practice, vol. 22, pp. 147-162, 2014.
34. J. Kang, S. J. Duncan, and D. N. Mavris, “Real-time scheduling techniques for electric vehicle charging in support of frequency regulation,” Procedia Computer Science, vol. 16, pp. 767-775, 2013.
35. H. K. Nguyen, and J. B. Song, “Optimal charging and discharging for multiple PHEVs with demand side management in vehicle-to-building,” Journal of Communications and networks, vol. 14, no. 6, pp. 662-671, 2012.
36. A. Subramanian, M. Garcia, A. Dominguez-Garcia, D. Callaway, K. Poolla, and P. Varaiya, “Real-time scheduling of deferrable electric loads.” pp. 3643-3650.
37. K. Clement-Nyns, E. Haesen, and J. Driesen, “The impact of charging plug-in hybrid electric vehicles on a residential distribution grid,” IEEE Transactions on power systems, vol. 25, no. 1, pp. 371–380, 2009.
38. P. Richardson, D. Flynn, and A. Keane, “Local versus centralized charging strategies for electric vehicles in low voltage distribution systems,” IEEE Transactions on Smart Grid, vol. 3, no. 2, pp. 1020-1028, 2012.
39. D. Wu, D. C. Aliprantis, and L. Ying, “Load scheduling and dispatch for aggregators of plug-in electric vehicles,” IEEE Transactions on Smart Grid, vol. 3, no. 1, pp. 368-376, 2011.
40. C. Luo, Y.-F. Huang, and V. Gupta, “Stochastic dynamic pricing for EV charging stations with renewable integration and energy storage,” IEEE Transactions on Smart Grid, vol. 9, no. 2, pp. 1494-1505, 2017.
41. M. H. K. Tushar, A. W. Zeineddine, and C. Assi, “Demand-side management by regulating charging and discharging of the EV, ESS, and utilizing renewable energy,” IEEE Transactions on Industrial Informatics, vol. 14, no. 1, pp. 117-126, 2017.
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