Dynamic Modeling and Analysis of a Remote Hybrid Power System with Pumped Hydro Storage

In this research, dynamic modeling of a remote hybrid power system and feasibility of a pumped hydro storage system is presented. Current hybrid system in Ramea, Newfoundland has an electrolyzer, storage and hydrogen generator system. This research proposes a pumped hydro storage as a replacement to...

Full description

Bibliographic Details
Main Authors: Iqbal, Tariq, Asif, Md. Rahimul Hasan
Format: Article in Journal/Newspaper
Language:English
Published: DEStech Publications 2013
Subjects:
Online Access:https://research.library.mun.ca/14760/
https://research.library.mun.ca/14760/1/IJES_FullPaper_v2.pdf
https://www.researchgate.net/publication/275578302_Dynamic_Modeling_and_Analysis_of_a_Remote_Hybrid_Power_System_with_Pumped_Hydro_Storage
id ftmemorialuniv:oai:research.library.mun.ca:14760
record_format openpolar
spelling ftmemorialuniv:oai:research.library.mun.ca:14760 2023-10-01T03:57:36+02:00 Dynamic Modeling and Analysis of a Remote Hybrid Power System with Pumped Hydro Storage Iqbal, Tariq Asif, Md. Rahimul Hasan 2013-10 application/pdf https://research.library.mun.ca/14760/ https://research.library.mun.ca/14760/1/IJES_FullPaper_v2.pdf https://www.researchgate.net/publication/275578302_Dynamic_Modeling_and_Analysis_of_a_Remote_Hybrid_Power_System_with_Pumped_Hydro_Storage en eng DEStech Publications https://research.library.mun.ca/14760/1/IJES_FullPaper_v2.pdf Iqbal, Tariq <https://research.library.mun.ca/view/creator_az/Iqbal=3ATariq=3A=3A.html> and Asif, Md. Rahimul Hasan <https://research.library.mun.ca/view/creator_az/Asif=3AMd=2E_Rahimul_Hasan=3A=3A.html> (2013) Dynamic Modeling and Analysis of a Remote Hybrid Power System with Pumped Hydro Storage. International Journal of Energy Science (IJES), 3 (5). ISSN 2304-3679 cc_by_nc Article PeerReviewed 2013 ftmemorialuniv 2023-09-03T06:49:54Z In this research, dynamic modeling of a remote hybrid power system and feasibility of a pumped hydro storage system is presented. Current hybrid system in Ramea, Newfoundland has an electrolyzer, storage and hydrogen generator system. This research proposes a pumped hydro storage as a replacement to the hydrogen system. Detailed MATLAB-Simulink modeling has been done for every component of the Ramea hybrid power system. Incorporation of a pumped hydro system and some lead acid batteries will eliminate the low turn around efficiency of the electrolyzer and hydrogen generator system. The system dynamic model presented here is fast, accurate and includes dynamic and supervisory controllers. The proposed real time supervisory controller algorithm observes the available surplus/missing power in the system and regulates pump/turbine and charging/discharging of the battery bank to maintain a stable system frequency. This paper presents dynamic model, supervisory controller design and algorithm, six case studies and detailed simulation results. Article in Journal/Newspaper Newfoundland Memorial University of Newfoundland: Research Repository
institution Open Polar
collection Memorial University of Newfoundland: Research Repository
op_collection_id ftmemorialuniv
language English
description In this research, dynamic modeling of a remote hybrid power system and feasibility of a pumped hydro storage system is presented. Current hybrid system in Ramea, Newfoundland has an electrolyzer, storage and hydrogen generator system. This research proposes a pumped hydro storage as a replacement to the hydrogen system. Detailed MATLAB-Simulink modeling has been done for every component of the Ramea hybrid power system. Incorporation of a pumped hydro system and some lead acid batteries will eliminate the low turn around efficiency of the electrolyzer and hydrogen generator system. The system dynamic model presented here is fast, accurate and includes dynamic and supervisory controllers. The proposed real time supervisory controller algorithm observes the available surplus/missing power in the system and regulates pump/turbine and charging/discharging of the battery bank to maintain a stable system frequency. This paper presents dynamic model, supervisory controller design and algorithm, six case studies and detailed simulation results.
format Article in Journal/Newspaper
author Iqbal, Tariq
Asif, Md. Rahimul Hasan
spellingShingle Iqbal, Tariq
Asif, Md. Rahimul Hasan
Dynamic Modeling and Analysis of a Remote Hybrid Power System with Pumped Hydro Storage
author_facet Iqbal, Tariq
Asif, Md. Rahimul Hasan
author_sort Iqbal, Tariq
title Dynamic Modeling and Analysis of a Remote Hybrid Power System with Pumped Hydro Storage
title_short Dynamic Modeling and Analysis of a Remote Hybrid Power System with Pumped Hydro Storage
title_full Dynamic Modeling and Analysis of a Remote Hybrid Power System with Pumped Hydro Storage
title_fullStr Dynamic Modeling and Analysis of a Remote Hybrid Power System with Pumped Hydro Storage
title_full_unstemmed Dynamic Modeling and Analysis of a Remote Hybrid Power System with Pumped Hydro Storage
title_sort dynamic modeling and analysis of a remote hybrid power system with pumped hydro storage
publisher DEStech Publications
publishDate 2013
url https://research.library.mun.ca/14760/
https://research.library.mun.ca/14760/1/IJES_FullPaper_v2.pdf
https://www.researchgate.net/publication/275578302_Dynamic_Modeling_and_Analysis_of_a_Remote_Hybrid_Power_System_with_Pumped_Hydro_Storage
genre Newfoundland
genre_facet Newfoundland
op_relation https://research.library.mun.ca/14760/1/IJES_FullPaper_v2.pdf
Iqbal, Tariq <https://research.library.mun.ca/view/creator_az/Iqbal=3ATariq=3A=3A.html> and Asif, Md. Rahimul Hasan <https://research.library.mun.ca/view/creator_az/Asif=3AMd=2E_Rahimul_Hasan=3A=3A.html> (2013) Dynamic Modeling and Analysis of a Remote Hybrid Power System with Pumped Hydro Storage. International Journal of Energy Science (IJES), 3 (5). ISSN 2304-3679
op_rights cc_by_nc
_version_ 1778529371226636288