µPMU-based smart adaptive protection scheme for microgrids

The concepts of microgrids (MGs) and smart grid represent the recent targeted revolution towards fully smart electrical network integrated with high penetration of renewable energy sources (RESs). The protection system of MGs becomes a challenge due to variable characteristics of its currents, bidir...

Full description

Bibliographic Details
Main Authors: Mohamed Salah Elbana, Nabil Abbasy, Ashraf Meghed, Nahil Shaker
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:Journal of Modern Power Systems and Clean Energy
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9028840/
id doaj-5bd18cafad7b45918bbb15f527d35633
record_format Article
spelling doaj-5bd18cafad7b45918bbb15f527d356332021-04-23T16:12:46ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202019-01-017488789810.1007/s40565-019-0533-69028840µPMU-based smart adaptive protection scheme for microgridsMohamed Salah Elbana0Nabil Abbasy1Ashraf Meghed2Nahil Shaker3Faculty of Engineering, Alexandria University,Electrical Engineering Department,Alexandria,Egypt,21544Faculty of Engineering, Alexandria University,Electrical Engineering Department,Alexandria,Egypt,21544Faculty of Engineering, Alexandria University,Electrical Engineering Department,Alexandria,Egypt,21544Faculty of Engineering, Alexandria University,Electrical Engineering Department,Alexandria,Egypt,21544The concepts of microgrids (MGs) and smart grid represent the recent targeted revolution towards fully smart electrical network integrated with high penetration of renewable energy sources (RESs). The protection system of MGs becomes a challenge due to variable characteristics of its currents, bidirectional power flow and output power fluctuations of RES, causing selectivity and sensitivity issues for conventional protective devices (PDs) with fixed setting. In this paper, a smart protection scheme (SPS) is proposed using micro-phasor measurement units (µPMUs) to obtain the continuous rapid synchronized phasor measurement data. And it is communicated with a microgrid central controller (MGCC) through highly reliable communication architecture to carry out online smart adaptive protection scheme. Fault index coefficients and abnormality coefficients are calculated for each feeder to detect the fault location and the abnormality case. Detailed modeling of an MG including 10-bus connected distribution system with integrated distributed generation (DG) is simulated using ETAP software. The proposed protection algorithm is modeled and evaluated using MATLAB software. The proposed fault detector and abnormality detector can enable quick and accurate fault identification and isolation.https://ieeexplore.ieee.org/document/9028840/Fault index coefficientsMicrogrid (MG)Micro-phasor measurement unit (µPMU)Renewable energy source (RES)Smart protection scheme (SPS)
collection DOAJ
language English
format Article
sources DOAJ
author Mohamed Salah Elbana
Nabil Abbasy
Ashraf Meghed
Nahil Shaker
spellingShingle Mohamed Salah Elbana
Nabil Abbasy
Ashraf Meghed
Nahil Shaker
µPMU-based smart adaptive protection scheme for microgrids
Journal of Modern Power Systems and Clean Energy
Fault index coefficients
Microgrid (MG)
Micro-phasor measurement unit (µPMU)
Renewable energy source (RES)
Smart protection scheme (SPS)
author_facet Mohamed Salah Elbana
Nabil Abbasy
Ashraf Meghed
Nahil Shaker
author_sort Mohamed Salah Elbana
title µPMU-based smart adaptive protection scheme for microgrids
title_short µPMU-based smart adaptive protection scheme for microgrids
title_full µPMU-based smart adaptive protection scheme for microgrids
title_fullStr µPMU-based smart adaptive protection scheme for microgrids
title_full_unstemmed µPMU-based smart adaptive protection scheme for microgrids
title_sort µpmu-based smart adaptive protection scheme for microgrids
publisher IEEE
series Journal of Modern Power Systems and Clean Energy
issn 2196-5420
publishDate 2019-01-01
description The concepts of microgrids (MGs) and smart grid represent the recent targeted revolution towards fully smart electrical network integrated with high penetration of renewable energy sources (RESs). The protection system of MGs becomes a challenge due to variable characteristics of its currents, bidirectional power flow and output power fluctuations of RES, causing selectivity and sensitivity issues for conventional protective devices (PDs) with fixed setting. In this paper, a smart protection scheme (SPS) is proposed using micro-phasor measurement units (µPMUs) to obtain the continuous rapid synchronized phasor measurement data. And it is communicated with a microgrid central controller (MGCC) through highly reliable communication architecture to carry out online smart adaptive protection scheme. Fault index coefficients and abnormality coefficients are calculated for each feeder to detect the fault location and the abnormality case. Detailed modeling of an MG including 10-bus connected distribution system with integrated distributed generation (DG) is simulated using ETAP software. The proposed protection algorithm is modeled and evaluated using MATLAB software. The proposed fault detector and abnormality detector can enable quick and accurate fault identification and isolation.
topic Fault index coefficients
Microgrid (MG)
Micro-phasor measurement unit (µPMU)
Renewable energy source (RES)
Smart protection scheme (SPS)
url https://ieeexplore.ieee.org/document/9028840/
work_keys_str_mv AT mohamedsalahelbana x00b5pmubasedsmartadaptiveprotectionschemeformicrogrids
AT nabilabbasy x00b5pmubasedsmartadaptiveprotectionschemeformicrogrids
AT ashrafmeghed x00b5pmubasedsmartadaptiveprotectionschemeformicrogrids
AT nahilshaker x00b5pmubasedsmartadaptiveprotectionschemeformicrogrids
_version_ 1721512535698440192