Title :
Probabilistic evaluation of lightning-related failure rate of power system apparatus
Author :
Lambert, Rémi ; Tarasiewicz, Eva ; Xémard, Alain ; Fleury, Gérard
Author_Institution :
Electricite de France, Clamart, France
fDate :
4/1/2003 12:00:00 AM
Abstract :
Traditionally, insulation coordination of power system apparatus relies on deterministic approaches where some conservative voltage stresses are defined and the insulation levels are then adjusted using protective ratios and margins. In the case of lightning stresses, this could easily lead to overinsulation or overdesign and subsequently to an increase in the cost of equipment. On the other hand, insufficient insulation could lead to power system failures with disastrous technical and economic consequences. In this paper, we present a formalized method for predicting the lightning-related failure rate of power system equipment. In the probabilistic approach to insulation coordination of power system apparatus we quantify the expected risk of failure under lightning stresses to enable an economically optimized design. To illustrate the method, the expected failure rate of surge arresters applied to unshielded 230-kV transmission line has been calculated.
Keywords :
arresters; failure analysis; insulation co-ordination; power overhead lines; probability; risk management; 230 kV; conservative voltage stresses; economically optimized design; expected failure risk; first-order reliability method; insufficient insulation; insulation coordination; lightning-related failure rate; overdesign; overinsulation; power overhead lines; power system apparatus; power system failures; probabilistic evaluation; protective margins; protective ratios; surge arresters; unshielded transmission line; Costs; Economic forecasting; Insulation; Lightning; Power generation economics; Power system economics; Power system protection; Power systems; Stress; Voltage;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2003.809732