Mr. Sobhan Dorahaki

Research Assistant
Shahid Bahonar University of Kerman, Kerman, Iran


Highest Degree
Ph.D. Student in Electrical Engineering from Shahid Bahonar University of Kerman, Kerman, Iran

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Area of Interest:

Engineering
Electrical Power Engineering
Electrical Engineering
Electrical Power Systems
Renewable Energy Technology

Selected Publications

  1. Dezfouli, M.M.S., S. Dorahaki, M. Rashidinejad, A. Abdollahi and A. Bakhshai, 2029. A New Energy Hub Scheduling Model Considering Energy Efficiency and Demand Response Programs as Energy Democracy Policy. IEEE International Conference on Engineering Technologies and Applied Sciences (ICETAS), 21-12-2019 Institute of Electrical and Electronics Engineers 1-6.
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  2. Rashidinejad, M., S. Dorahaki, S.S. Zadsar and ‪M.R. Salehizadeh, 2022. Robust scheduling of water and energy hub considering CAES, power-to-gas units, and demand response programs. J. Electr. Comput. Eng. Innovations, 10: 371-380.
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  3. Namjoo, A.R., R. Dashti, S. Dorahaki and H.R. Shaker, 2022. A novel enviro-economic three-stage market-based energy management considering energy storage systems and demand response programs for networked smart microgrids. Electr. Eng., 10.1007/s00202-022-01510-x.
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  4. Dorahaki, S., M. Rashidinejad, S.F.F. Ardestani, A. Abdollahi and M.R. Salehizadeh, 2022. A home energy management model considering energy storage and smart flexible appliances: A modified time-driven prospect theory approach. J. Energy Storage, Vol. 48. 10.1016/j.est.2022.104049.
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  5. Dorahaki, S., A. Abdollahi, Z. Sadeghi, M. Rashidinejad and M.R. Salehizadeh, 2022. A robust optimization approach for uncertainty management of smart water and energy hub along with demand response program. J. Iran. Assoc. Electr. Electr. Eng., 19: 89-96.
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  6. Dorahaki, S., R. Dashti and H.R. Shaker, 2021. A Novel Probabilistic Risk-Based Energy Management Model in the Smart MicroGrids. IEEE International Conference on Smart Energy Grid Engineering (SEGE), 13-08-2021 Institute Electrical Electronics Engineers, 26-31.
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  7. Dorahaki, S., M. Rashidinejad, S.F.F. Ardestani, A. Abdollahi and M.R. Salehizadeh, 2021. A Peer-to-Peer energy trading market model based on time-driven prospect theory in a smart and sustainable energy community. Sustainable Energy Grids Networks, Vol. 28. 10.1016/j.segan.2021.100542.
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  8. Dorahaki, S., M. Rashidinejad, H. Farahmand, M. MollahassaniPour, M. Pourakbari-Kasmaei and J.P.S. Catalao, 2021. An Optimal Flexible Partitioning of Smart Distribution System Considering Electrical and Gas Infrastructure. Power Tech Conference, 2-07-2021 Institute Electrical Electronics Engineers, 1-6.
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  9. Dorahaki, S., A. Abdollahi, M. Rashidinejad and M. Moghbeli, 2021. The role of energy storage and demand response as energy democracy policies in the energy productivity of hybrid hub system considering social inconvenience cost. J. Energy Storage, Vol. 33. 10.1016/j.est.2020.102022.
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  10. Dorahaki, S., R. Dashti and H.R. Shaker, 2020. Optimal outage management model considering emergency demand response programs for a smart distribution system. Appl. Sci., Vol. 10. 10.3390/app10217406.
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  11. Dorahaki, S., R. Dashti and H.R. Shaker, 2020. Optimal energy management in the smart microgrid considering the electrical energy storage system and the demand-side energy efficiency program. J. Energy Storage, Vol. 28. 10.1016/j.est.2020.101229.
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  12. Dorahaki, S., R. Dashti and H.R. Shaker, 2019. The Optimal Energy Management in the Smart Microgrid Considering Demand Response Program and Energy Storage. International Symposium on Advanced Electrical and Communication Technologies (ISAECT), 29-11-2019 Institute Electrical Electronics Engineers, 1-6.
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  13. Dorahaki, S., M. Rashidinejad, M. Mollahassani-pour and A. Bakhshai, 2019. An efficient hybrid structure to solve economic-environmental energy scheduling integrated with demand side management programs. Electr. Eng., 101: 1249-1260.
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  14. Dorahaki, S., M. Rashidinejad, A. Abdollahi and M. Mollahassani-pour, 2018. A novel two-stage structure for coordination of energy efficiency and demand response in the smart grid environment. Int. J. Electr. Power Energy Syst., 97: 353-362.
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