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Asynchronous nonsalient-pole compensators with total air $ cooling^{1} $
The fundamental parameters and construction of asynchronous compensators, soon to be produced by the “Silovye Mashiny” — “Élektrosila” Joint Stock Company in 2008, are considered. The compensator has a massive nonsalient-pole rotor with two excitation windings, shifted by 90° (in electrical angles), supplied from controlled reversible power sources. The compensators provide delivery-consumption of reactive power in the ±100 Mvar range with the possibility of short-term double forcing of the power output and improved dynamic characteristics compared with synchronous compensators.
Asynchronous nonsalient-pole compensators with total air $ cooling^{1} $
The fundamental parameters and construction of asynchronous compensators, soon to be produced by the “Silovye Mashiny” — “Élektrosila” Joint Stock Company in 2008, are considered. The compensator has a massive nonsalient-pole rotor with two excitation windings, shifted by 90° (in electrical angles), supplied from controlled reversible power sources. The compensators provide delivery-consumption of reactive power in the ±100 Mvar range with the possibility of short-term double forcing of the power output and improved dynamic characteristics compared with synchronous compensators.
Asynchronous nonsalient-pole compensators with total air $ cooling^{1} $
Pinchuk, N. D. (author) / Antonyuk, O. V. (author) / Kadi-Ogly, I. A. (author) / Sidel’nikov, A. V. (author) / Iogansen, V. I. (author) / Dubrovin, Yu. N. (author) / Kartashova, T. N. (author) / Kiilo, O. L. (author)
2009
Article (Journal)
Electronic Resource
English
BKL:
56.30
Wasserbau
/
56.30$jWasserbau
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