DocumentCode
3627348
Title
New approach towards protecting electrical equipment insulation systems against Very Fast Transients
Author
W. Piasecki;G. Bywalec;M. Florkowski;M. Fulczyk;J. Furgal
Author_Institution
ABB Sp z o.o., Corporate Research , ul. Starowislna 13A, 31-038 Cracow, Poland
fYear
2007
Firstpage
89
Lastpage
94
Abstract
Very high frequency components in the power networks may result from events such as lightning surges and switching or fault transients. Such transients can destroy motors, transformers and other electrical equipment due internal resonant phenomena resulting in local amplification of voltage. Overstressing the insulation system reduces significantly the equipment lifetime and often leads to internal short-circuit. At very high frequencies wave propagation phenomena must be taken into account and thus wave impedance matching between particular components becomes important. The use of low-loss cables of wave impedance not matching the impedance of the equipment results in wave reflections generating repetitive HF overvoltages. A typical method of protecting the equipment against very fast transient (VFT) phenomena is the use of surge capacitors or RC-snubbers. The size and cost of installation of these devices are significant and thus they are rarely used in practice, especially for protecting MV equipment. In the present article a new approach towards suppressing VFTs with the use of compact series impedance element combined with a dedicated surge capacitor is presented. The approach developed enables one to construct a compact protective device introducing a series impedance already at significantly lower frequencies. The device is particularly suitable for protecting transformers connected to low loss cable lines with the use of a vacuum circuit breaker (VCB).
Keywords
"Dielectrics and electrical insulation","Surge protection","Impedance","Frequency","Power transformer insulation","Cables","Capacitors","Power system protection","Lightning","Circuit faults"
Publisher
ieee
Conference_Titel
Electrical Insulation and Dielectric Phenomena, 2007. CEIDP 2007. Annual Report - Conference on
ISSN
0084-9162
Print_ISBN
978-1-4244-1481-9
Type
conf
DOI
10.1109/CEIDP.2007.4451558
Filename
4451558
Link To Document