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Increasing the reliability of the shutdown of 500 – 750-kV overhead lines equipped with shunt reactors in an unsuccessful three-phase automatic repeated closure cycle

  • Power Systems and Electric Networks
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Power Technology and Engineering Aims and scope

The reasons for circuit-breaker failures during repeated disconnection of 500 – 750 kV overhead lines with shunt reactors in a cycle of unsuccessful three-phase automatic reconnection (TARC) are analyzed. Recommendations are made for increasing the operating reliability of power transmission lines with shunt reactors when there is unsuccessful reconnection.

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References

  1. A. A. Akopyan, N. N. Belyakov, A. N. Komarov et al., “Results of tests on an experimental-commercial Konakovo – Moscow 750-kV electrical transmission line and of an investigation of the complete transmission system,” in: A. M. Nekrasov and S. S. Rokotyan (eds.), Long-Distance 750-kV Electric Power Transmission. Vol. 2 [in Russian], Énergiya, Moscow (1975).

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  3. Yu. I. Lyskov, “Protection from internal surges in 750-kV electric power transmission,” in: A. M. Nekrasov and S. S. Rokotyan (eds.), Long-Distance 750-kV Electric Power Transmission. Vol. 2 [in Russian], Énergiya, Moscow (1975).

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Translated from Élektricheskie Stantsii, No. 11, November 2012, pp. 39 – 42.

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Kuz’micheva, K.I., Merzlyakov, A.S. & Fokin, G.G. Increasing the reliability of the shutdown of 500 – 750-kV overhead lines equipped with shunt reactors in an unsuccessful three-phase automatic repeated closure cycle. Power Technol Eng 47, 71–75 (2013). https://doi.org/10.1007/s10749-013-0401-x

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  • DOI: https://doi.org/10.1007/s10749-013-0401-x

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