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Majid Majidi

Researcher at University of Tabriz

Publications -  32
Citations -  1373

Majid Majidi is an academic researcher from University of Tabriz. The author has contributed to research in topics: Demand response & Electric power system. The author has an hindex of 15, co-authored 27 publications receiving 980 citations. Previous affiliations of Majid Majidi include University of Utah.

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A stochastic self-scheduling program for compressed air energy storage (CAES) of renewable energy sources (RESs) based on a demand response mechanism

TL;DR: In this article, a stochastic self-scheduling of renewable energy sources (RESs) considering compressed air energy storage (CAES) in the presence of a demand response program (DRP) is proposed.
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A multi-objective model for optimal operation of a battery/PV/fuel cell/grid hybrid energy system using weighted sum technique and fuzzy satisfying approach considering responsible load management

TL;DR: A multi-objective optimization model is proposed to solve the cost-emission problem of battery/PV/fuel cell hybrid system in the presence of demand response program (DRP), which transfers some amount of load from peak periods to other periods and minimizes total cost of system.
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An efficient cost-reliability optimization model for optimal siting and sizing of energy storage system in a microgrid in the presence of responsible load management

TL;DR: In this paper, a bi-objective optimization model for optimal siting and sizing of an energy storage system (ESS) in a microgrid in the presence of demand response program (DRP) is proposed.
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Integration of Smart Energy Hubs in Distribution Networks Under Uncertainties and Demand Response Concept

TL;DR: A novel optimization framework based on hybrid scenario-based/interval/information gap decision theory method is developed to investigate the optimal operation of smart energy hubs subject to economic priorities, technical constraints of the distribution network and uncertainties.
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A cost-emission model for fuel cell/PV/battery hybrid energy system in the presence of demand response program: ε-constraint method and fuzzy satisfying approach

TL;DR: In this paper, a multi-objective model is proposed for economic and environmental operation of a battery/fuel cell/photovoltaic (PV) hybrid energy system in the presence of demand response program (DRP).