Optimal operation of smart energy hub considering high-temperature heat and power storage

Mohammad Ali Lasemi*, Ahmad Arabkoohsar, Amin Hajizadeh, Jirapa Kamsamrong, Pratyush Das

*Kontaktforfatter

Publikation: Bidrag til bog/antologi/rapport/konference proceedingKonferenceartikel i proceedingForskningpeer review

4 Citationer (Scopus)
24 Downloads (Pure)

Abstract

Due to the impacts of high intermittent renewable resources, increasing their penetration in the generation sector of energy systems is still challenging. In this regard, the integration of different energy networks can play a key role in dealing with this challenge. This paper focuses on the analysis and optimization of multi-generation energy storage (MGES) system's performance and investigates the role of this type of energy storage in the operation of future smart energy systems by considering 100% green energy goals. Hence, this paper first introduces high-temperature heat and power storage (HTHPS) system, as a novel MGES unit, for a local integrated energy system (IES) with different energy carriers. Then, a novel optimal energy scheduling scheme for this system is presented by considering the energy hub concept. The proposed IES is introduced as a Smart Energy Hub (SEH) which supplies local energy demands through local renewable resources generation, as well as upstream energy networks, by considering a competitive energy market. Finally, the performance of the proposed SEH is investigated by simulating different case studies and its effectiveness is proved in increasing the renewable generation penetration.

OriginalsprogEngelsk
TitelProceedings of 2022 7th International Conference on Renewable Energy and Conservation
Antal sider7
Vol/bind9
ForlagElsevier
Publikationsdatookt. 2023
Sider415-421
DOI
StatusUdgivet - okt. 2023
Begivenhed7th International Conference on Renewable
Energy and Conservation (ICREC 2022)
- Paris, Frankrig
Varighed: 18 nov. 202220 nov. 2022
https://www.icrec.org/2022.html

Konference

Konference7th International Conference on Renewable
Energy and Conservation (ICREC 2022)
Land/OmrådeFrankrig
ByParis
Periode18/11/202220/11/2022
Internetadresse
NavnEnergy Reports
NummerSupplement 11
Vol/bind9
ISSN2352-4847

Bibliografisk note

Publisher Copyright:
© 2023 The Author(s)

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