4.5 Article

Drive-train torsional vibration suppression of large scale PMSG-based WECS

Journal

Publisher

SPRINGER SINGAPORE PTE LTD
DOI: 10.1186/s41601-022-00257-8

Keywords

Adaptive damping; Constant power control; MPPT; PMSG-based WECS; SSH; SSO; Stiffness compensation; Torsional vibration

Funding

  1. Shaanxi Provincial Department of Education Project [17JK0691]

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This paper provides a systematic analysis of the torsional vibration problem in PMSG-based WECS under MPPT control and constant power control. A stiffness compensation control strategy is proposed to effectively suppress the torsional vibration.
This paper provides a systematic analysis of the large scale PMSG (permanent magnet synchronous generator)-based WECS (wind energy conversion system) torsional vibration problem under MPPT (maximum power point tracking) control and constant power control. This is from the perspective of SSO (sub-synchronous oscillation), SSH (sub-synchronous harmonics) and forced torsional vibration. The cause of SSO is the negative total system damping, weakened by the constant power control. The system is susceptible to inducing SSH in the grid current and voltage in the under-damped condition. To effectively suppress the torsional vibration of PMSG-based WECS, a stiffness compensation control strategy based on adaptive damping is proposed. The results show that SSO, SSH and the forced torsional vibration can be suppressed at the source using the proposed suppression strategy.

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