Design of RBFN Controller Based Boost Type Vienna Rectifier for Grid-Tied Wind Energy Conversion System

This paper presents a radial basis function network (RBFN) controller-based three-phase boost-type Vienna rectifier for a grid-tied wind energy conversion system. Boost-type Vienna rectifier is an ac/dc converter characterized by high power density and improved power factor in addition to maintainin...

Full description

Bibliographic Details
Main Authors: Damodhar Reddy, Sudha Ramasamy
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8246508/
_version_ 1818644982289924096
author Damodhar Reddy
Sudha Ramasamy
author_facet Damodhar Reddy
Sudha Ramasamy
author_sort Damodhar Reddy
collection DOAJ
description This paper presents a radial basis function network (RBFN) controller-based three-phase boost-type Vienna rectifier for a grid-tied wind energy conversion system. Boost-type Vienna rectifier is an ac/dc converter characterized by high power density and improved power factor in addition to maintaining a sinusoidal current with low total harmonic distortion at the input side. Such converter systems find its utility and application related to unidirectional power flow, such as data centers, telecommunication systems, and more appropriately for wind energy conversion systems. This paper involves the implementation of an RBFN-based control strategy for Vienna rectifier to ascertain the ability of the proposed strategy to obtain enhanced performance of a wind energy conversion system. The choice of the RBFN for the control of the rectifier system stems from its inherent capability to ensure better dynamic control notwithstanding its capability to reduce the design complexities during the network training phase. Simulation is carried out using MATLAB Simulink for a 1-kW standalone and grid-tied wind energy conversion system. This paper involves carrying out the detailed analysis and results for different wind velocities under standalone and grid-tied conditions.
first_indexed 2024-12-17T00:23:30Z
format Article
id doaj.art-32cbc43c6b5d4736b6b99885950bfeee
institution Directory Open Access Journal
issn 2169-3536
language English
last_indexed 2024-12-17T00:23:30Z
publishDate 2018-01-01
publisher IEEE
record_format Article
series IEEE Access
spelling doaj.art-32cbc43c6b5d4736b6b99885950bfeee2022-12-21T22:10:31ZengIEEEIEEE Access2169-35362018-01-0163167317510.1109/ACCESS.2017.27875678246508Design of RBFN Controller Based Boost Type Vienna Rectifier for Grid-Tied Wind Energy Conversion SystemDamodhar Reddy0Sudha Ramasamy1https://orcid.org/0000-0002-4091-7732School of Electrical Engineering, VIT University, Vellore, IndiaSchool of Electrical Engineering, VIT University, Vellore, IndiaThis paper presents a radial basis function network (RBFN) controller-based three-phase boost-type Vienna rectifier for a grid-tied wind energy conversion system. Boost-type Vienna rectifier is an ac/dc converter characterized by high power density and improved power factor in addition to maintaining a sinusoidal current with low total harmonic distortion at the input side. Such converter systems find its utility and application related to unidirectional power flow, such as data centers, telecommunication systems, and more appropriately for wind energy conversion systems. This paper involves the implementation of an RBFN-based control strategy for Vienna rectifier to ascertain the ability of the proposed strategy to obtain enhanced performance of a wind energy conversion system. The choice of the RBFN for the control of the rectifier system stems from its inherent capability to ensure better dynamic control notwithstanding its capability to reduce the design complexities during the network training phase. Simulation is carried out using MATLAB Simulink for a 1-kW standalone and grid-tied wind energy conversion system. This paper involves carrying out the detailed analysis and results for different wind velocities under standalone and grid-tied conditions.https://ieeexplore.ieee.org/document/8246508/Wind energy conversion system (WECS)PMSG (permanent magnet synchronous generator)Vienna rectifierRBFNDC-link voltage and grid side inverter (GSI)
spellingShingle Damodhar Reddy
Sudha Ramasamy
Design of RBFN Controller Based Boost Type Vienna Rectifier for Grid-Tied Wind Energy Conversion System
IEEE Access
Wind energy conversion system (WECS)
PMSG (permanent magnet synchronous generator)
Vienna rectifier
RBFN
DC-link voltage and grid side inverter (GSI)
title Design of RBFN Controller Based Boost Type Vienna Rectifier for Grid-Tied Wind Energy Conversion System
title_full Design of RBFN Controller Based Boost Type Vienna Rectifier for Grid-Tied Wind Energy Conversion System
title_fullStr Design of RBFN Controller Based Boost Type Vienna Rectifier for Grid-Tied Wind Energy Conversion System
title_full_unstemmed Design of RBFN Controller Based Boost Type Vienna Rectifier for Grid-Tied Wind Energy Conversion System
title_short Design of RBFN Controller Based Boost Type Vienna Rectifier for Grid-Tied Wind Energy Conversion System
title_sort design of rbfn controller based boost type vienna rectifier for grid tied wind energy conversion system
topic Wind energy conversion system (WECS)
PMSG (permanent magnet synchronous generator)
Vienna rectifier
RBFN
DC-link voltage and grid side inverter (GSI)
url https://ieeexplore.ieee.org/document/8246508/
work_keys_str_mv AT damodharreddy designofrbfncontrollerbasedboosttypeviennarectifierforgridtiedwindenergyconversionsystem
AT sudharamasamy designofrbfncontrollerbasedboosttypeviennarectifierforgridtiedwindenergyconversionsystem