Journalartikel

Active oscillation attenuation for a wind turbine with a hydrostatic transmission and a permanent magnet synchronous generator


AutorenlisteKersten, Julia; Aschemann, Harald

Jahr der Veröffentlichung2019

Seiten113-123

ZeitschriftAutomatisierungstechnik

Bandnummer67

Heftnummer2

ISSN0178-2312

DOI Linkhttps://doi.org/10.1515/auto-2018-0032

VerlagDe Gruyter


Abstract
In this paper, a model-based control is proposed for an innovative 5 MW wind turbine with a hydrostatic transmission and a permanent magnet synchronous generator. The overall scheme involves two decentralised controllers, namely, one for the tower and blade deflections and another one for the drive train. For both control loops, a linear regulator design based on quadratic cost functions is performed by means of Linear Matrix Inequalities (LMIs). Using LMIs, given bounded uncertainty domains, which result from, for example, the variability of specific parameters, can be considered adequately. In contrast to state-of-the-art approaches, the presented control technique is capable to cover the whole operating range from low to very high wind speeds in terms of a unified parameterization.



Zitierstile

Harvard-ZitierstilKersten, J. and Aschemann, H. (2019) Active oscillation attenuation for a wind turbine with a hydrostatic transmission and a permanent magnet synchronous generator, Automatisierungstechnik, 67(2), pp. 113-123. https://doi.org/10.1515/auto-2018-0032

APA-ZitierstilKersten, J., & Aschemann, H. (2019). Active oscillation attenuation for a wind turbine with a hydrostatic transmission and a permanent magnet synchronous generator. Automatisierungstechnik. 67(2), 113-123. https://doi.org/10.1515/auto-2018-0032



Schlagwörter


active oscillation attenuation of a wind turbinehydrostatic transmissionLMIs


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