Designing an Energy Storage System Fuzzy PID Controller for Microgrid Islanded Operation

Recently, interest in microgrids, which are composed of distributed generation (DG), distributed storage (DS), and loads, has been growing as a potentially effective clean energy system to mitigate against climate change. The microgrid is operated in the grid-connected mode and the islanded mode acc...

Full description

Bibliographic Details
Main Authors: Jin-Hong Jeon, Hak-Man Kim, Seul-Ki Kim, Heung-Kwan Choi, Jong-Yul Kim
Format: Article
Language:English
Published: MDPI AG 2011-09-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/4/9/1443/
id doaj-6e22c3df0f5144ffaa4efdff43c69541
record_format Article
spelling doaj-6e22c3df0f5144ffaa4efdff43c695412020-11-24T23:45:47ZengMDPI AGEnergies1996-10732011-09-01491443146010.3390/en4091443Designing an Energy Storage System Fuzzy PID Controller for Microgrid Islanded OperationJin-Hong JeonHak-Man KimSeul-Ki KimHeung-Kwan ChoiJong-Yul KimRecently, interest in microgrids, which are composed of distributed generation (DG), distributed storage (DS), and loads, has been growing as a potentially effective clean energy system to mitigate against climate change. The microgrid is operated in the grid-connected mode and the islanded mode according to the conditions of the upstream power grid. The role of the energy storage system (ESS) is especially important to maintain constant the frequency and voltage of an islanded microgrid. For this reason, various approaches for ESS control have been put forth. In this paper, a fuzzy PID controller is proposed to improve the frequency control performance of the ESS. This fuzzy PID controller consists of a fuzzy logic controller and a conventional PI controller, connected in series. The fuzzy logic controller has two input signals, and then the output signal of the fuzzy logic controller is the input signal of the conventional PI controller. For comparison of control performance, gains of each PI controller and fuzzy PID controller are tuned by the particle swam optimization (PSO) algorithm. In the simulation study, the control performance of the fuzzy PID was also tested under various operating conditions using the PSCAD/EMTDC simulation platform.http://www.mdpi.com/1996-1073/4/9/1443/microgridislanded operationfuzzy PID controllerenergy storage system (ESS)particle swam optimization (PSO)
collection DOAJ
language English
format Article
sources DOAJ
author Jin-Hong Jeon
Hak-Man Kim
Seul-Ki Kim
Heung-Kwan Choi
Jong-Yul Kim
spellingShingle Jin-Hong Jeon
Hak-Man Kim
Seul-Ki Kim
Heung-Kwan Choi
Jong-Yul Kim
Designing an Energy Storage System Fuzzy PID Controller for Microgrid Islanded Operation
Energies
microgrid
islanded operation
fuzzy PID controller
energy storage system (ESS)
particle swam optimization (PSO)
author_facet Jin-Hong Jeon
Hak-Man Kim
Seul-Ki Kim
Heung-Kwan Choi
Jong-Yul Kim
author_sort Jin-Hong Jeon
title Designing an Energy Storage System Fuzzy PID Controller for Microgrid Islanded Operation
title_short Designing an Energy Storage System Fuzzy PID Controller for Microgrid Islanded Operation
title_full Designing an Energy Storage System Fuzzy PID Controller for Microgrid Islanded Operation
title_fullStr Designing an Energy Storage System Fuzzy PID Controller for Microgrid Islanded Operation
title_full_unstemmed Designing an Energy Storage System Fuzzy PID Controller for Microgrid Islanded Operation
title_sort designing an energy storage system fuzzy pid controller for microgrid islanded operation
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2011-09-01
description Recently, interest in microgrids, which are composed of distributed generation (DG), distributed storage (DS), and loads, has been growing as a potentially effective clean energy system to mitigate against climate change. The microgrid is operated in the grid-connected mode and the islanded mode according to the conditions of the upstream power grid. The role of the energy storage system (ESS) is especially important to maintain constant the frequency and voltage of an islanded microgrid. For this reason, various approaches for ESS control have been put forth. In this paper, a fuzzy PID controller is proposed to improve the frequency control performance of the ESS. This fuzzy PID controller consists of a fuzzy logic controller and a conventional PI controller, connected in series. The fuzzy logic controller has two input signals, and then the output signal of the fuzzy logic controller is the input signal of the conventional PI controller. For comparison of control performance, gains of each PI controller and fuzzy PID controller are tuned by the particle swam optimization (PSO) algorithm. In the simulation study, the control performance of the fuzzy PID was also tested under various operating conditions using the PSCAD/EMTDC simulation platform.
topic microgrid
islanded operation
fuzzy PID controller
energy storage system (ESS)
particle swam optimization (PSO)
url http://www.mdpi.com/1996-1073/4/9/1443/
work_keys_str_mv AT jinhongjeon designinganenergystoragesystemfuzzypidcontrollerformicrogridislandedoperation
AT hakmankim designinganenergystoragesystemfuzzypidcontrollerformicrogridislandedoperation
AT seulkikim designinganenergystoragesystemfuzzypidcontrollerformicrogridislandedoperation
AT heungkwanchoi designinganenergystoragesystemfuzzypidcontrollerformicrogridislandedoperation
AT jongyulkim designinganenergystoragesystemfuzzypidcontrollerformicrogridislandedoperation
_version_ 1725495850306633728