Design and Performance Assessment of an Integrated Flywheel Energy Storage Systems based on an Inner-Rotor Large-Airgap SPM

Floris A
First
;
Damiano A;Serpi A
Last
2020-01-01

Abstract

An integrated flywheel energy storage system topology is presented in this paper, which is based on an inner rotor large-airgap surface-mounted permanent magnet synchronous machine and which aims at achieving a unity energy to power ratio. The proposed synchronous machine is equipped with a thick carbon-fiber cylindric layer that acts as both the flywheel and the sleeve; as a result, this layer ensures permanent magnet containment and storing/delivering the required amount of energy simultaneously. In order to comply with all the design targets and constraints, a two-step design procedure is employed: a preliminary design is achieved analytically, by using an integrated mechanical-electromagnetic-energy modelling. Subsequently, the preliminary configuration is refined and validated through finite element analyses, which regard a performance assessment on mechanical, electromagnetic, energy, and thermal aspects at different operating conditions.
2020
Inglese
2020 International Conference on Electrical Machines (ICEM)
978-1-7281-9944-3
633
639
7
24th International Conference on Electrical Machines (ICEM 2020)
Contributo
Esperti anonimi
Aug. 23-26, 2020
Gothenburg, Sweden (Virtual Conf.)
internazionale
scientifica
Finite element analysis; Flywheels; Integrated design; Modeling; Permanent magnet machines
no
4 Contributo in Atti di Convegno (Proceeding)::4.1 Contributo in Atti di convegno
Floris, A; Damiano, A; Serpi, A
273
3
4.1 Contributo in Atti di convegno
reserved
info:eu-repo/semantics/conferencePaper
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