This paper is aimed at the modeling and simulation of wind power system, with particular emphasis on small wind turbines employing surface permanent magnet synchronous generators (SPMSGs). Generator and inverter front-end interaction is analytically and numerically modeled, in order to evaluate the generator's efficiency depending on its electric parameters, both during normal and power limited operation. Passive and active rectifier front-end are taken into account to assess the influence of power electronics front-end over system performances. The final target of this work is to determine design guidelines for small wind turbine system optimization. The analysis is carried out through simulations which take into account the interactions of the SPMSG's electrical parameters and through the evaluation of the generator's efficiency at different operating conditions and inverter front-end architectures. The data obtained was further validated with experimental characterization of two different system architectures.
Micro wind turbine system integration guidelines PMSG and inverter front end choices / Claudio, Bianchini; Fabio, Immovilli; Emilio, Lorenzani; Alberto, Bellini; Buticchi, Giampaolo. - (2012), pp. 1073-1078. (Intervento presentato al convegno IECON 2012 - 38th Annual Conference of IEEE Industrial Electronics tenutosi a Ecole de technologiue superieure (ETS) Montreal, QC, Canada nel 25 Oct - 28 Oct 2012) [10.1109/IECON.2012.6388571].
Micro wind turbine system integration guidelines PMSG and inverter front end choices
BUTICCHI, Giampaolo
2012-01-01
Abstract
This paper is aimed at the modeling and simulation of wind power system, with particular emphasis on small wind turbines employing surface permanent magnet synchronous generators (SPMSGs). Generator and inverter front-end interaction is analytically and numerically modeled, in order to evaluate the generator's efficiency depending on its electric parameters, both during normal and power limited operation. Passive and active rectifier front-end are taken into account to assess the influence of power electronics front-end over system performances. The final target of this work is to determine design guidelines for small wind turbine system optimization. The analysis is carried out through simulations which take into account the interactions of the SPMSG's electrical parameters and through the evaluation of the generator's efficiency at different operating conditions and inverter front-end architectures. The data obtained was further validated with experimental characterization of two different system architectures.File | Dimensione | Formato | |
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