2014
DOI: 10.1109/tpwrd.2014.2328013
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New Methods of Damping Very Fast Transient Overvoltages in Gas-Insulated Switchgear

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Cited by 35 publications
(21 citation statements)
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“…These methods require insertion to the GIS current path of an energy dissipating element, which can be of resistive [29], magnetic [30,31] or resistive-inductive [32] type. Also, internal resonators [33] and surge arresters [34] are being proposed to serve this purpose.…”
Section: Vfto Damping For Uhv Gis Developmentmentioning
confidence: 99%
“…These methods require insertion to the GIS current path of an energy dissipating element, which can be of resistive [29], magnetic [30,31] or resistive-inductive [32] type. Also, internal resonators [33] and surge arresters [34] are being proposed to serve this purpose.…”
Section: Vfto Damping For Uhv Gis Developmentmentioning
confidence: 99%
“…The well-proven methods include disconnector equipped with a damping resistor [8], busbar with magnetic rings of different types (ferrite [9]- [11], amorphous [12], and nanocrystalline [11], [13]), and disconnector with reduced trapped charge voltage [14], [15]. In addition to the well-established methods, the new methods on VFTO damping are constantly emerging, giving an attempt to well understand and select the most appropriate solution (or a combination) for particular GIS application.…”
Section: A Very Fast Transient Overvoltages In Gismentioning
confidence: 99%
“…In addition to the well-established methods, the new methods on VFTO damping are constantly emerging, giving an attempt to well understand and select the most appropriate solution (or a combination) for particular GIS application. The new methods include high frequency resonators [16], GIS busbar with inductive arrangement and surge arresters [13], and disconnector with modified contact system [17].…”
Section: A Very Fast Transient Overvoltages In Gismentioning
confidence: 99%
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“…Большая часть исследований [3][4][5][6][7][8] компактных рас-пределительных устройств с элегазовой изоляцией (КРУЭ) была направлена на моделирование, измерение и подавление переходных перенапряжений, созда-ваемых при коммутации КРУЭ. Новые виды компактных коммутационных распределительных устройств [9,10] должны отвечать всем современным тре-бованиям: компактность, независимость от условий окружающей среды, ми-нимальное техническое обслуживание, безопасность обслуживающего персо-нала, высокая отключающая способность, стабильность времен горения дуги и малый износ контактов [11].…”
Section: Introductionunclassified