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A Comparative Analysis of Integrated DC Microgrid with Hybrid Power Generation Systems by an Intelligent Control Strategy

Authors: K.MEENENDRANATH REDDY; SYED RESHMA;

A Comparative Analysis of Integrated DC Microgrid with Hybrid Power Generation Systems by an Intelligent Control Strategy

Abstract

Abstract: The modern electric power system is dealing with issues such as environmental protection, rising worldwide electricity demand, high dependability requirements, energy cleanliness, and planning constraints. Most people nowadays desire to live and work in smart areas such as smart towns and smart institutions that incorporate smart grid technologies. Energy management is a complicated issue since a large portion of these smart grid systems rely on HES. As a result, the possibility of microgrid emerges, where a microgrid can manage as a single controllable system and is believed to be a cluster of loads and distributed energy resources, which may comprise numerous RES and energy storage devices. For the microgrid system to function consistently, energy management of a large number of distributed energy resources is necessary. An intellectual energy management controller for a smart DC-microgrid based on a combination of ANFIS and fractional-order proportional-integral-derivative (FO-PID) controller approaches in this paper. Among the HES integrated into the DC-microgrid are a battery bank, wind energy, and a photovoltaic (PV) energy source. The novel intelligent fractional order PID approach is used to regulate the source-side converters (SSCs) in order to extract as much power as possible from RES(wind and PV) and enhance the power quality provided to the DC-microgrid. The proposed control system is implemented in MATLAB/Simulink simulation results and should compare with step changes and random changing conditions from conventional technique. The suggested controller assures continuous service and steady output power when compare with the existing method. Keywords: DC microgrid, ANFIS, FOPID, Management control, Renewable sources. Title: A Comparative Analysis of Integrated DC Microgrid with Hybrid Power Generation Systems by an Intelligent Control Strategy Author: K.MEENENDRANATH REDDY, SYED RESHMA International Journal of Recent Research in Electrical and Electronics Engineering (IJRREEE) ISSN 2349-7815 Vol. 9, Issue 2, April 2022 - June 2022 Page No: 1-10 Paper Publications Website: www.paperpublications.org Published date: 11-May-2022 DOI: https://doi.org/10.5281/zenodo.6538769 Paper Download Link (Source): https://www.paperpublications.org/upload/book/A%20Comparative%20Analysis-11052022-3.pdf

{"references": ["[1]\tSayed.T, Rezk.H, \"Integrated standalone hybrid PV-FC-DG power system for battery in united arab emirates,\" Int.J.Hydro Energy, 2021.", "[2]\tAyob.A, Hoque.M.M, \"Review of ESS for EV applications; issues and challenges,\" Renew.Sustain.Eenergy, 2017.", "[3]\tUstun.S, Latif.A, \"Optimal V/F regulation in distributed sustainable energy base hybrid microgrids,\" Energies, 2021.", "[4]\tBacha.F, Aouiti.A, \"Energy management and control strategy for DFIG-WT/FC hybrid system with SCSS,\" Energy, 2020.[5]\tK.Meenendranath Reddy et al. \"An Efficient MPPT Technique using Fuzzy/P&O Controller for PV Applications\", International Journal for Modern Trends in Science and Technology (IJMTST), 2021.", "[6]\tRo.J.S, Ullah.N, \"A super twisting FOTSMC for DFIG based wind energy conversion system,\" Energies, 2020.", "[7]\tAbeida.H, Soliman.S, \"Super twisting FOEMC DC integration for a modern education sector microgrid,\" IEEE Access, vol-8, 2020.", "[8]\tLu.Y, Wu.J, \"Adaptive back stepping SMC for boost converter with constant power load,\" IEEE Access, vol-7, 2019.", "[9]\tEl Aroudi.A, Vidal-Idiarte.E, \"SMC of a boost converter under constant power loading conditions,\" IET Power Elect, vol-12, 2019.", "[10]\tK.Meenendranath Reddy et al. \"Short Circuit Analysis in Microgrid with RES by Using ETAP\", IJGDC, Aug-2020.", "[11]\tLu.L, Ma.T, \"Development of hybrid B-SCES for remote area RES,\" Appl.Engy, 2015.", "[12]\tBacha.F, Aouiti.A, \"Design and implement for DFIG-WT/FC hybrid system with SCSS,\" Energy, 2020."]}

International Journal of Recent Research in Electrical and Electronics Engineering (IJRREEE), ISSN 2349-7815, Paper Publications, Website: www.paperpublications.org

Keywords

FOPID, Renewable sources, https://www.paperpublications.org/upload/book/A%20Comparative%20Analysis-11052022-3.pdf, DC microgrid, Management control, ANFIS

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