TY - JOUR
T1 - Voltage-time characteristics and related approximation formula for 6.6-kv solid-core-type insulator having higher lightning impulse withstand voltage
AU - Matsumoto, Satoshi
AU - Sato, Tomoyuki
AU - Koga, Yoshiyasu
AU - Yokoyama, Shigeru
PY - 2014/3/13
Y1 - 2014/3/13
N2 - To establish an optimal lightning protection method for power distribution lines, factors such as the mechanism behind lightning surges as well as power distribution network and insulation level of power distribution lines should be taken into consideration. This study experimentally clarifies the voltage-time (V-t) characteristics of currently used 6.6-kV power distribution insulators having higher lightning impulse withstand voltage (LIWV) by considering the differences in polarity and the presence or absence of slurry. Furthermore, in this paper we propose approximation formulas based on the sparkover model for calculating the flashover characteristics of 6.6-kV power distribution insulators, which can contribute to insulation coordination throughout the power distribution system.
AB - To establish an optimal lightning protection method for power distribution lines, factors such as the mechanism behind lightning surges as well as power distribution network and insulation level of power distribution lines should be taken into consideration. This study experimentally clarifies the voltage-time (V-t) characteristics of currently used 6.6-kV power distribution insulators having higher lightning impulse withstand voltage (LIWV) by considering the differences in polarity and the presence or absence of slurry. Furthermore, in this paper we propose approximation formulas based on the sparkover model for calculating the flashover characteristics of 6.6-kV power distribution insulators, which can contribute to insulation coordination throughout the power distribution system.
KW - Power distribution insulator
KW - Voltage-time (V-t) characteristics
UR - http://www.scopus.com/inward/record.url?scp=84897776027&partnerID=8YFLogxK
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U2 - 10.1541/ieejpes.134.224
DO - 10.1541/ieejpes.134.224
M3 - Article
AN - SCOPUS:84897776027
SN - 0385-4213
VL - 134
SP - 224
EP - 229
JO - IEEJ Transactions on Power and Energy
JF - IEEJ Transactions on Power and Energy
IS - 3
ER -