Inverter current control for reactive power compensation in solar grid system using Self-Tuned Fuzzy Logic Controller

The solar photovoltaic (PV) systems have gained more attention in renewable energy production due to their cost efficiency and reliability. Typically, reactive power compensation and harmonics elimination are challenging and demanding tasks for improving the efficacy of grid-connected solar PV syste...

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Autores principales: R. Nirmala, S. Venkatesan
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Publicado: Taylor & Francis Group 2022
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spelling oai:doaj.org-article:ab5c3ee1f8a64d638a36f7a0ebc029482021-12-01T14:40:58ZInverter current control for reactive power compensation in solar grid system using Self-Tuned Fuzzy Logic Controller0005-11441848-338010.1080/00051144.2021.2009653https://doaj.org/article/ab5c3ee1f8a64d638a36f7a0ebc029482022-01-01T00:00:00Zhttp://dx.doi.org/10.1080/00051144.2021.2009653https://doaj.org/toc/0005-1144https://doaj.org/toc/1848-3380The solar photovoltaic (PV) systems have gained more attention in renewable energy production due to their cost efficiency and reliability. Typically, reactive power compensation and harmonics elimination are challenging and demanding tasks for improving the efficacy of grid-connected solar PV systems. For this purpose, many research works developed different converter and controller topologies for solving the power quality issues in grid-PV systems. But, it limits the problems of increased harmonics, computation complexity, inefficiency and reduced performance outcomes. Thus, this research aims to develop an integrated hysteresis current controller and Self-Tuned Fuzzy Logic (SFLC) based MPPT controllers for eliminating the harmonics and unbalanced current in single-phase grid systems. Also, it helps to extract the maximum amount of power from the solar PV array. The LUO converter is deployed to reduce ripple contents. The Phased Locked Loop (PLL) based synchronization is performed to maintain the phase angle, frequency and magnitude levels of source power. Moreover, the hysteresis current controller for the inverter has been specifically designed to reduce the THD of the system under IEEE519_1992 regulations. During experiments, both the simulation and hardware results have been evaluated for validating the performance of the proposed controller design.R. NirmalaS. VenkatesanTaylor & Francis Grouparticlemaximum power point tracking (mppt)photovoltaic (pv)grid connectedself-tuned fuzzy logic controller (sflc)reactive power compensation (rpc)Control engineering systems. Automatic machinery (General)TJ212-225AutomationT59.5ENAutomatika, Vol 63, Iss 1, Pp 102-121 (2022)
institution DOAJ
collection DOAJ
language EN
topic maximum power point tracking (mppt)
photovoltaic (pv)
grid connected
self-tuned fuzzy logic controller (sflc)
reactive power compensation (rpc)
Control engineering systems. Automatic machinery (General)
TJ212-225
Automation
T59.5
spellingShingle maximum power point tracking (mppt)
photovoltaic (pv)
grid connected
self-tuned fuzzy logic controller (sflc)
reactive power compensation (rpc)
Control engineering systems. Automatic machinery (General)
TJ212-225
Automation
T59.5
R. Nirmala
S. Venkatesan
Inverter current control for reactive power compensation in solar grid system using Self-Tuned Fuzzy Logic Controller
description The solar photovoltaic (PV) systems have gained more attention in renewable energy production due to their cost efficiency and reliability. Typically, reactive power compensation and harmonics elimination are challenging and demanding tasks for improving the efficacy of grid-connected solar PV systems. For this purpose, many research works developed different converter and controller topologies for solving the power quality issues in grid-PV systems. But, it limits the problems of increased harmonics, computation complexity, inefficiency and reduced performance outcomes. Thus, this research aims to develop an integrated hysteresis current controller and Self-Tuned Fuzzy Logic (SFLC) based MPPT controllers for eliminating the harmonics and unbalanced current in single-phase grid systems. Also, it helps to extract the maximum amount of power from the solar PV array. The LUO converter is deployed to reduce ripple contents. The Phased Locked Loop (PLL) based synchronization is performed to maintain the phase angle, frequency and magnitude levels of source power. Moreover, the hysteresis current controller for the inverter has been specifically designed to reduce the THD of the system under IEEE519_1992 regulations. During experiments, both the simulation and hardware results have been evaluated for validating the performance of the proposed controller design.
format article
author R. Nirmala
S. Venkatesan
author_facet R. Nirmala
S. Venkatesan
author_sort R. Nirmala
title Inverter current control for reactive power compensation in solar grid system using Self-Tuned Fuzzy Logic Controller
title_short Inverter current control for reactive power compensation in solar grid system using Self-Tuned Fuzzy Logic Controller
title_full Inverter current control for reactive power compensation in solar grid system using Self-Tuned Fuzzy Logic Controller
title_fullStr Inverter current control for reactive power compensation in solar grid system using Self-Tuned Fuzzy Logic Controller
title_full_unstemmed Inverter current control for reactive power compensation in solar grid system using Self-Tuned Fuzzy Logic Controller
title_sort inverter current control for reactive power compensation in solar grid system using self-tuned fuzzy logic controller
publisher Taylor & Francis Group
publishDate 2022
url https://doaj.org/article/ab5c3ee1f8a64d638a36f7a0ebc02948
work_keys_str_mv AT rnirmala invertercurrentcontrolforreactivepowercompensationinsolargridsystemusingselftunedfuzzylogiccontroller
AT svenkatesan invertercurrentcontrolforreactivepowercompensationinsolargridsystemusingselftunedfuzzylogiccontroller
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