Optimal multi-criteria selection of energy storage systems for grid applications

Currently, a wide variety of energy storage alternatives are available, each with a unique set of characteristics advantageous on selective applications. Current studies focus only on levelized costs on predicting the best-fit technology for specific applications. The study addresses this limitation...

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Main Authors: Cruz, Salvador Marrod M., Esparcia, Eugene J., Pascasio, Jethro Daniel A., Tan, Raymond Girard R., Aviso, Kathleen B., Promentilla, Michael Angelo B., Ocon, Joey D.
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Published: Animo Repository 2019
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/3308
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Institution: De La Salle University
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-43032021-04-21T02:00:41Z Optimal multi-criteria selection of energy storage systems for grid applications Cruz, Salvador Marrod M. Esparcia, Eugene J. Pascasio, Jethro Daniel A. Tan, Raymond Girard R. Aviso, Kathleen B. Promentilla, Michael Angelo B. Ocon, Joey D. Currently, a wide variety of energy storage alternatives are available, each with a unique set of characteristics advantageous on selective applications. Current studies focus only on levelized costs on predicting the best-fit technology for specific applications. The study addresses this limitation by considering multiple factors on the selection process among technologies for specific applications. A systematic approach on the selection of energy storage technologies based on multiple and possible conflicting factors was proposed in this study for two specific applications: frequency regulation and load levelling. Fuzzy Analytic Hierarchy Process was utilized to generate the relative importance of each criterion. Monte Carlo simulations were performed to reflect the effect of battery characteristics and operating parameters uncertainties on the resulting scores of technologies. Grey Relational Analysis was used to aggregate the performance attributes of alternatives into a single score reflecting the desirability of alternatives. The levelized costs dominated all other criteria for both applications. Lithium ion battery dominated all technologies for both applications resulting from its well-rounded performance across all considered attributes. Results emphasized the importance of considering socio-economic indicators alongside techno-economic parameters on selecting the technology for future deployment. Thorough analysis on the results is important not only for decision-makers but for developers and innovators as well to direct future research. Copyright © 2019, AIDIC Servizi S.r.l. 2019-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/3308 info:doi/10.3303/CET1976193 Faculty Research Work Animo Repository Energy storage Smart power grids Chemical Engineering Energy Systems
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Energy storage
Smart power grids
Chemical Engineering
Energy Systems
spellingShingle Energy storage
Smart power grids
Chemical Engineering
Energy Systems
Cruz, Salvador Marrod M.
Esparcia, Eugene J.
Pascasio, Jethro Daniel A.
Tan, Raymond Girard R.
Aviso, Kathleen B.
Promentilla, Michael Angelo B.
Ocon, Joey D.
Optimal multi-criteria selection of energy storage systems for grid applications
description Currently, a wide variety of energy storage alternatives are available, each with a unique set of characteristics advantageous on selective applications. Current studies focus only on levelized costs on predicting the best-fit technology for specific applications. The study addresses this limitation by considering multiple factors on the selection process among technologies for specific applications. A systematic approach on the selection of energy storage technologies based on multiple and possible conflicting factors was proposed in this study for two specific applications: frequency regulation and load levelling. Fuzzy Analytic Hierarchy Process was utilized to generate the relative importance of each criterion. Monte Carlo simulations were performed to reflect the effect of battery characteristics and operating parameters uncertainties on the resulting scores of technologies. Grey Relational Analysis was used to aggregate the performance attributes of alternatives into a single score reflecting the desirability of alternatives. The levelized costs dominated all other criteria for both applications. Lithium ion battery dominated all technologies for both applications resulting from its well-rounded performance across all considered attributes. Results emphasized the importance of considering socio-economic indicators alongside techno-economic parameters on selecting the technology for future deployment. Thorough analysis on the results is important not only for decision-makers but for developers and innovators as well to direct future research. Copyright © 2019, AIDIC Servizi S.r.l.
format text
author Cruz, Salvador Marrod M.
Esparcia, Eugene J.
Pascasio, Jethro Daniel A.
Tan, Raymond Girard R.
Aviso, Kathleen B.
Promentilla, Michael Angelo B.
Ocon, Joey D.
author_facet Cruz, Salvador Marrod M.
Esparcia, Eugene J.
Pascasio, Jethro Daniel A.
Tan, Raymond Girard R.
Aviso, Kathleen B.
Promentilla, Michael Angelo B.
Ocon, Joey D.
author_sort Cruz, Salvador Marrod M.
title Optimal multi-criteria selection of energy storage systems for grid applications
title_short Optimal multi-criteria selection of energy storage systems for grid applications
title_full Optimal multi-criteria selection of energy storage systems for grid applications
title_fullStr Optimal multi-criteria selection of energy storage systems for grid applications
title_full_unstemmed Optimal multi-criteria selection of energy storage systems for grid applications
title_sort optimal multi-criteria selection of energy storage systems for grid applications
publisher Animo Repository
publishDate 2019
url https://animorepository.dlsu.edu.ph/faculty_research/3308
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