UGC Approved Journal no 63975(19)

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Published in:

Volume 5 Issue 8
August-2018
eISSN: 2349-5162

UGC and ISSN approved 7.95 impact factor UGC Approved Journal no 63975

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Published Paper ID:
JETIR1808423


Registration ID:
186777

Page Number

842-849

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Title

HESS Micro Grids Integration for Power Quality Improvement using Fuzzy logic controller

Authors

Abstract

This project proposes a fuzzy based for HESS micro grids integration for power quality improvement. The system incorporates clean energy generation along with power quality improvement thus increasing functionality of the system. Rising demand for distributed generation based on Renewable Energy Sources (RES) has led to several issues in the operation of utility grids. The microgrid is a promising solution to solve these problems. A dedicated energy storage system could contribute to a better integration of RES into the microgrid by smoothing the renewable resource’s intermittency, improving the quality of the injected power and enabling additional services like voltage and frequency regulation. However, due to energy/power technological limitations, it is often necessary to use Hybrid Energy Storage Systems (HESS).In this paper the use of a 4-Leg 3L-NPC power converter topology to interface a RES with a HESS (formed by a two Li-Ion batteries) in a microgrid context has been investigated. A new model of the structural limits is presented and implemented to exploit the entire capability of the 4-Leg 3L-NPC converter to insure a maximum power division between the two ESS. A non-linear 2-SMC scheme has been designed and tuned to control the zero sequence injection in the modulating signals in order to control the power flow of the HESS. Simulation and experimental results proved the capacity of the proposed control strategy to manage a HESS in order to improve the power quality and stability as well as to control the renewable energy injected into a micro grid. The investigation of the limits of the topology showed a power exchange capability among this fuzzy enables its application to control in conditions of distorted voltages. Threshold values of existing and proposed methods has been compared and the proposed threshold value is less than the existing system. Hence by using the fuzzy logic controller in proposed system reduced the voltage and current threshold values. So that improves the performance of operation in proposed system. The proposed method is verified by simulating the system in Matlab 2013a Simulink with combination of linear and nonlinear loads.

Key Words

DC-AC power converters, Energy storage, Microgrids, Power quality, Sliding mode control

Cite This Article

"HESS Micro Grids Integration for Power Quality Improvement using Fuzzy logic controller ", International Journal of Emerging Technologies and Innovative Research (www.jetir.org), ISSN:2349-5162, Vol.5, Issue 8, page no.842-849, August-2018, Available :http://www.jetir.org/papers/JETIR1808423.pdf

ISSN


2349-5162 | Impact Factor 7.95 Calculate by Google Scholar

An International Scholarly Open Access Journal, Peer-Reviewed, Refereed Journal Impact Factor 7.95 Calculate by Google Scholar and Semantic Scholar | AI-Powered Research Tool, Multidisciplinary, Monthly, Multilanguage Journal Indexing in All Major Database & Metadata, Citation Generator

Cite This Article

"HESS Micro Grids Integration for Power Quality Improvement using Fuzzy logic controller ", International Journal of Emerging Technologies and Innovative Research (www.jetir.org | UGC and issn Approved), ISSN:2349-5162, Vol.5, Issue 8, page no. pp842-849, August-2018, Available at : http://www.jetir.org/papers/JETIR1808423.pdf

Publication Details

Published Paper ID: JETIR1808423
Registration ID: 186777
Published In: Volume 5 | Issue 8 | Year August-2018
DOI (Digital Object Identifier):
Page No: 842-849
Country: tirupathi, chittoor distrct, andhra pradesh, India .
Area: Engineering
ISSN Number: 2349-5162
Publisher: IJ Publication


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