Robust control of adaptive power quality compensator in Multi-Microgrids for power quality enhancement using puzzle optimization algorithm

The primary purpose of this paper is to design a novel multi-microgrid connection that uses power compensation methods to improve voltage profiles and reduce harmonic distortions using specific compensation devices in low inertia systems. The utilized compensation device is an adaptive power quality...

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Published inAin Shams Engineering Journal Vol. 14; no. 8; p. 102047
Main Authors Sindi, Hatem F., Alghamdi, Sultan, Rawa, Muhyaddin, Omar, Ahmed I., Hussain Elmetwaly, Ahmed
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.08.2023
Elsevier
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Online AccessGet full text
ISSN2090-4479
2090-4495
2090-4495
DOI10.1016/j.asej.2022.102047

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Abstract The primary purpose of this paper is to design a novel multi-microgrid connection that uses power compensation methods to improve voltage profiles and reduce harmonic distortions using specific compensation devices in low inertia systems. The utilized compensation device is an adaptive power quality compensator (APQC) which includes series and shunt compensators. Thyristor controlled series capacitor (TCSC) is used as a series compensator to alleviate the dynamic voltage profile as well as diminish transient voltage. A shunt active power filter (SAPF) is utilized as a shunt compensator to improve the power factor and lessen voltage and current harmonics. The TCSC has a power level of error of the PID controller, while the SAPF has a dynamic multi-level of errors of the PID controller. Further, the recent swarm intelligence-based puzzle optimization algorithm is employed to get the best self-tuning of the PID controller gains to reveal the act of the APQC typology. The efficacy of the presented APQC with the multi-level mechanism approach, assessed using Matlab/Simulink time-domain simulations, has been compared with the recently reported literature. Two operation modes are addressed, one for the island mode and the other for the grid-connected mode with significant renewable generation penetration and nonlinear loads. APQC successfully enhances the power quality of multi-microgrids (MMGs), according to theoretical research and simulation statistics. Finally, three comparative study assessments of numerous optimization approaches, with a unified power flow conditioner (UPFC), and with other series-shunt compensators like distributed power condition controller (DPCC) are proposed to attain efficacy and strength of the compensator.
AbstractList The primary purpose of this paper is to design a novel multi-microgrid connection that uses power compensation methods to improve voltage profiles and reduce harmonic distortions using specific compensation devices in low inertia systems. The utilized compensation device is an adaptive power quality compensator (APQC) which includes series and shunt compensators. Thyristor controlled series capacitor (TCSC) is used as a series compensator to alleviate the dynamic voltage profile as well as diminish transient voltage. A shunt active power filter (SAPF) is utilized as a shunt compensator to improve the power factor and lessen voltage and current harmonics. The TCSC has a power level of error of the PID controller, while the SAPF has a dynamic multi-level of errors of the PID controller. Further, the recent swarm intelligence-based puzzle optimization algorithm is employed to get the best self-tuning of the PID controller gains to reveal the act of the APQC typology. The efficacy of the presented APQC with the multi-level mechanism approach, assessed using Matlab/Simulink time-domain simulations, has been compared with the recently reported literature. Two operation modes are addressed, one for the island mode and the other for the grid-connected mode with significant renewable generation penetration and nonlinear loads. APQC successfully enhances the power quality of multi-microgrids (MMGs), according to theoretical research and simulation statistics. Finally, three comparative study assessments of numerous optimization approaches, with a unified power flow conditioner (UPFC), and with other series-shunt compensators like distributed power condition controller (DPCC) are proposed to attain efficacy and strength of the compensator.
ArticleNumber 102047
Author Omar, Ahmed I.
Hussain Elmetwaly, Ahmed
Alghamdi, Sultan
Sindi, Hatem F.
Rawa, Muhyaddin
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  fullname: Hussain Elmetwaly, Ahmed
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Issue 8
Keywords PID controller
DVR
PQ
RES
SVC
TCR
Shunt active power filter (SAPF)
ENN
PV
UPQC
DPCC
THD
TCSC
MG
Harmonic distortion
Thyristor-controlled series compensator (TCSC)
APQC
FACTS
ACMG
SAPF
POA
RSFCL
MMG
PWM
FAD
EM
MMGCCU
DGS
PEMFC
Power quality
CPD
APF
Adaptive power quality compensator (APQC)
MGT
VR
FC
FOPID
PM
MSRF
UPFC
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Snippet The primary purpose of this paper is to design a novel multi-microgrid connection that uses power compensation methods to improve voltage profiles and reduce...
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SubjectTerms Adaptive power quality compensator (APQC)
Harmonic distortion
PID controller
Power quality
Shunt active power filter (SAPF)
Thyristor-controlled series compensator (TCSC)
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Title Robust control of adaptive power quality compensator in Multi-Microgrids for power quality enhancement using puzzle optimization algorithm
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