H
Hossein Shayeghi
Researcher at University of Mohaghegh Ardabili
Publications - 225
Citations - 5640
Hossein Shayeghi is an academic researcher from University of Mohaghegh Ardabili. The author has contributed to research in topics: Electric power system & Control theory. The author has an hindex of 35, co-authored 207 publications receiving 4291 citations. Previous affiliations of Hossein Shayeghi include Iran University of Science and Technology.
Papers
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Load frequency control strategies: A state-of-the-art survey for the researcher
TL;DR: In this paper, the authors provide an overview of control strategies for researchers, as well as of their current use in the field of load frequency control (LFC), and make various comparisons between these approaches, and the main advantages and disadvantages of the methods.
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Two stage forecast engine with feature selection technique and improved meta-heuristic algorithm for electricity load forecasting
TL;DR: A hybrid forecast strategy including novel feature selection technique, and a complex forecast engine based on a new intelligent algorithm to improve its accuracy and capability is proposed for short-term load forecasting of electricity load.
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Demand side management in a smart micro-grid in the presence of renewable generation and demand response
TL;DR: In this paper, a stochastic programming model is proposed to optimize the performance of a smart micro-grid in a short term to minimize operating costs and emissions with renewable sources.
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A novel hybrid algorithm for electricity price and load forecasting in smart grids with demand-side management
TL;DR: In this article, the authors proposed a hybrid algorithm for simultaneous forecast of price and demand that uses a set of effective tools in preprocessing part, forecast engine and tuned algorithm to improve reliability of system operation as well as capital cost investments.
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Multi-stage fuzzy load frequency control using PSO
TL;DR: A particle swarm optimization (PSO) based multi-stage fuzzy (PSOMSF) controller is proposed for solution of the load frequency control (LFC) problem in a restructured power system that operate under deregulation based on the bilateral policy scheme.