Single‐phase wind‐BES microgrid with seamless transition capability
Abstract A new control strategy for a wind‐BES (battery energy storage) microgrid is presented, which controls the power transfer and the mode of operation seamlessly from an islanded mode (IM) to the grid connected mode (GCM) and vice versa. In GCM, the DC link voltage regulation, the load reactive...
Main Authors: | , |
---|---|
Format: | Article |
Language: | English |
Published: |
Wiley
2021-02-01
|
Series: | IET Power Electronics |
Subjects: | |
Online Access: | https://doi.org/10.1049/pel2.12035 |
_version_ | 1811255585291632640 |
---|---|
author | Tripurari Nath Gupta Bhim Singh |
author_facet | Tripurari Nath Gupta Bhim Singh |
author_sort | Tripurari Nath Gupta |
collection | DOAJ |
description | Abstract A new control strategy for a wind‐BES (battery energy storage) microgrid is presented, which controls the power transfer and the mode of operation seamlessly from an islanded mode (IM) to the grid connected mode (GCM) and vice versa. In GCM, the DC link voltage regulation, the load reactive power compensation and harmonics current mitigation are performed by the load side voltage source converter (LVSC) using a double sinusoidal signal integrator (DSSI) based control algorithm. The maximum power from the wind generation is extracted by operating the generator side voltage source converter (GSC). At the grid fault or grid disturbances, this microgrid operates in IM and LVSC is controlled in the voltage control mode. A synchronizing controller is utilized to control the operation of synchronization. The grid current and point of common coupling (PCC) voltage distortions are kept within the limit as per the IEEE‐519‐2014 and the IEEE‐1547 standards. The system operation is demonstrated through test results at several conditions such as, changing wind speeds, varying loads and seamless transition. |
first_indexed | 2024-04-12T17:26:06Z |
format | Article |
id | doaj.art-2d0fe8bb0cc14543b139ad66146c21ae |
institution | Directory Open Access Journal |
issn | 1755-4535 1755-4543 |
language | English |
last_indexed | 2024-04-12T17:26:06Z |
publishDate | 2021-02-01 |
publisher | Wiley |
record_format | Article |
series | IET Power Electronics |
spelling | doaj.art-2d0fe8bb0cc14543b139ad66146c21ae2022-12-22T03:23:17ZengWileyIET Power Electronics1755-45351755-45432021-02-0114231332510.1049/pel2.12035Single‐phase wind‐BES microgrid with seamless transition capabilityTripurari Nath Gupta0Bhim Singh1Department of Electrical Engineering Indian Institute of Technology Delhi New Delhi 110016 IndiaDepartment of Electrical Engineering Indian Institute of Technology Delhi New Delhi 110016 IndiaAbstract A new control strategy for a wind‐BES (battery energy storage) microgrid is presented, which controls the power transfer and the mode of operation seamlessly from an islanded mode (IM) to the grid connected mode (GCM) and vice versa. In GCM, the DC link voltage regulation, the load reactive power compensation and harmonics current mitigation are performed by the load side voltage source converter (LVSC) using a double sinusoidal signal integrator (DSSI) based control algorithm. The maximum power from the wind generation is extracted by operating the generator side voltage source converter (GSC). At the grid fault or grid disturbances, this microgrid operates in IM and LVSC is controlled in the voltage control mode. A synchronizing controller is utilized to control the operation of synchronization. The grid current and point of common coupling (PCC) voltage distortions are kept within the limit as per the IEEE‐519‐2014 and the IEEE‐1547 standards. The system operation is demonstrated through test results at several conditions such as, changing wind speeds, varying loads and seamless transition.https://doi.org/10.1049/pel2.12035Voltage controlCurrent controlPower and energy controlControl of electric power systemsDistributed power generationPower system control |
spellingShingle | Tripurari Nath Gupta Bhim Singh Single‐phase wind‐BES microgrid with seamless transition capability IET Power Electronics Voltage control Current control Power and energy control Control of electric power systems Distributed power generation Power system control |
title | Single‐phase wind‐BES microgrid with seamless transition capability |
title_full | Single‐phase wind‐BES microgrid with seamless transition capability |
title_fullStr | Single‐phase wind‐BES microgrid with seamless transition capability |
title_full_unstemmed | Single‐phase wind‐BES microgrid with seamless transition capability |
title_short | Single‐phase wind‐BES microgrid with seamless transition capability |
title_sort | single phase wind bes microgrid with seamless transition capability |
topic | Voltage control Current control Power and energy control Control of electric power systems Distributed power generation Power system control |
url | https://doi.org/10.1049/pel2.12035 |
work_keys_str_mv | AT tripurarinathgupta singlephasewindbesmicrogridwithseamlesstransitioncapability AT bhimsingh singlephasewindbesmicrogridwithseamlesstransitioncapability |