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- W4220798082 abstract "Type-III wind turbines with doubly fed induction generators (DFIGs) are generally equipped with crowbar circuits in practice to realize the low voltage ride-through (LVRT) during the fault period. Under this situation, DFIGs exhibit significantly different fault behavior by contrast with synchronous generators (SGs). This difference poses inevitable challenges to the existing distance protections that are normally designed based on SGs’ fault signature. In this paper, some easily overlooked issues regarding the superimposed components-based distance protection (SCBDP) when applied in lines emanating from DFIG-based wind farms (WFs) are revealed. It is shown that the unified phase angle property in the additional fault network may be jeopardized in the presence of DFIG-based WFs, thereby resulting in the high probability of failure under the in-zone fault conditions or undesirable operation under the out-of-zone fault conditions for the conventional SCBDP. To address these problems, based on the “phase angle congruency” idea, this paper proposes an improved SCBDP to mitigate the adverse impact of the crowbar-activated DFIGs. By adaptively regulating the phase angle of operating voltage, the improved SCBDP can work properly independent from the fault types and the sizes of crowbar resistance. Also, compared with conventional SCBDP, the improved SCBDP shows higher sensitivity and reliability while inheriting its strong tolerance capability against fault resistance. Extensive simulation results under different fault conditions show the expected performance of the improved SCBDP." @default.
- W4220798082 created "2022-04-03" @default.
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- W4220798082 date "2022-07-01" @default.
- W4220798082 modified "2023-09-24" @default.
- W4220798082 title "Superimposed components-based distance protection of lines emanating from DFIG-based wind farms" @default.
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- W4220798082 doi "https://doi.org/10.1016/j.epsr.2022.107916" @default.
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