Modeling and sizing of hybrid energy storage system for virtual synchronous generator

dc.contributor.authorWijetunge, SV
dc.contributor.authorGunasekera, S
dc.contributor.authorGamage, J
dc.contributor.authorPathirana, CD
dc.contributor.authorBolonne, S
dc.contributor.editorAdhikariwatte, W
dc.contributor.editorRathnayake, M
dc.contributor.editorHemachandra, K
dc.date.accessioned2022-10-25T06:27:03Z
dc.date.available2022-10-25T06:27:03Z
dc.date.issued2021-07
dc.description.abstractRenewable energy sources (RESs) play a major role in the modern power system to meet the increasing demand and to reduce environmental effects. But they are unable to perform frequency regulation resulting in higher frequency deviations with higher integration of RESs. To overcome this problem power converters are modified as synchronous generators using proper control mechanisms called as Virtual Synchronous Generators (VSGs). Energy Storage Systems are required to absorb and deliver excess energy. We have used a battery/ultracapacitor hybrid energy storage system (HESS) to achieve this. Power allocation for the two storage units is modeled such that fast-varying power fluctuations are compensated by ultracapacitor (UC) and low frequency power fluctuations are compensated by the battery. This is achieved by emulating the inertia by the ultracapacitor and emulating reheat turbine model, droop control etc. by the battery. Some research produces the modelling details of HESS but not the sizing considering required performance. To fulfil this research gap sizing of the HESS is presented through this research paper. Eventually, the proposed system was implemented and simulated in MATLAB Simulink. Results were analyzed to verify the proposed concept for different cases to prove that it gives outputs similar to conventional synchronous generator.en_US
dc.identifier.citationS. V. Wijetunge, S. Gunasekera, J. Gamage, C. D. Pathirana and S. Bolonne, "Modeling and Sizing of Hybrid Energy Storage System for Virtual Synchronous Generator," 2021 Moratuwa Engineering Research Conference (MERCon), 2021, pp. 77-82, doi: 10.1109/MERCon52712.2021.9525780.en_US
dc.identifier.conferenceMoratuwa Engineering Research Conference 2021en_US
dc.identifier.departmentEngineering Research Unit, University of Moratuwaen_US
dc.identifier.doi10.1109/MERCon52712.2021.9525780en_US
dc.identifier.facultyEngineeringen_US
dc.identifier.pgnos*****en_US
dc.identifier.placeMoratuwa, Sri Lankaen_US
dc.identifier.proceedingProceedings of Moratuwa Engineering Research Conference 2021en_US
dc.identifier.urihttp://dl.lib.uom.lk/handle/123/19221
dc.identifier.year2021en_US
dc.language.isoenen_US
dc.publisherIEEEen_US
dc.relation.urihttps://ieeexplore.ieee.org/document/9525780en_US
dc.subjectRenewable energy sources (RESs)en_US
dc.subjectHybrid energy storage system (HESS)en_US
dc.subjectBatteryen_US
dc.subjectUltracapacitor (UC)en_US
dc.subjectVirtual synchronous generator (VSG)en_US
dc.titleModeling and sizing of hybrid energy storage system for virtual synchronous generatoren_US
dc.typeConference-Full-texten_US

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