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- W2903779040 abstract "This paper presents a novel method to eliminate the negative sequence component of the power winding (PW) voltage caused by unbalanced load for stand-alone brushless doubly fed induction generator (BDFIG)-based ship shaft generation system. By detecting the phase error between the positive and negative sequence component of PW voltage, a reference frame aligning with the negative sequence voltage vector can be obtained, in which the $boldsymbol{q}$ -axis component of negative sequence voltage is zero and the $boldsymbol{d}$ -axis component equals to the negative sequence voltage amplitude. Then, the negative sequence voltage can be eliminated effectively, so long as the $boldsymbol{d}$ -axis component of negative sequence voltage is controlled to zero. Moreover, to avoid applying two separate controllers in positive and negative reference frames, one dead beat control (DBC) method is applied to regulate the control winding (CW) currents which contain both dc and ac components. The DBC is one of the predictive control method, which can obtain fast dynamic response. The comprehensive theoretical derivations are deduced. Finally, several typical experiments based on a 30 kW BDFIG prototype are carried out to verify the effectiveness of the whole control scheme proposed in this paper." @default.
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- W2903779040 date "2018-09-01" @default.
- W2903779040 modified "2023-09-25" @default.
- W2903779040 title "Improved Control Scheme for Unbalanced Standalone BDFIG Using Dead Beat Control Method" @default.
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- W2903779040 doi "https://doi.org/10.1109/ecce.2018.8557660" @default.
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