Title :
Influence of the electrode parameters on the pulse shape characteristic at small pressure and inter-electrode gap values
Author :
Osmokrovic, P. ; Loncar, B. ; Sasic, R.
Author_Institution :
Fac. of Electr. Eng., Belgrade Univ., Serbia
Abstract :
Summary form only given. Gas filled surge arresters (GFSA) has working point close to minimum on Paschen curve. Below that point breakdown follows Townsend\´s mechanism, i.e. the secondary processes on the electrodes dominate the secondary processes in the gas. The most important parameter of GFSA is its pulse shape characteristic. The main problem in GFSA application is its delayed response. The built-in radioactive sources cause the significant improvement of GFSA characteristic. On the other hand, the use of GFSA with radioactive filling would be some-what danger to the environment. Specific problems arise from inadequate procedure regulating for storage and destruction for GFSA with radioactive filling. The narrower the pulse characteristic is, the smaller response time is, i.e. the better protective characteristic of GFSA is. The aim of this paper is to present the electrode effects as approach for the improvement of GFSA protective characteristics in the most optimal way. In that purpose, we examined the influence of the electrode parameters on the pulse shape characteristics. As variable parameters, we used the electrode material and the manner of electrode surface processing. The electrodes were made either of copper, of aluminum or of electrons. The materials with higher values of output work corresponds larger pulse shape characteristics. In the case of investigation the influence of the manner of processing electrode surface on pulse shape characteristics, the electrodes were made of brass with polished, sand-processed or engraved. By applying the "area law" it is possible to determine the pulse shape characteristic based on single series of measurements (using single shape of the pulse voltage). An original analytical algorithm has been developed to determine and compare characteristics of GFSA for a pulse shape characteristic.
Keywords :
Townsend discharge; aluminium; arresters; brass; copper; electrodes; pulse shaping; radioactive sources; Al; Cu; GFSA; GFSA application; GFSA protective properties; Paschen curve; Townsend mechanism; analytical algorithm; built in radioactive source; electrode effects; electrode material; electrode parameter; electrode surface processing; electron electrode; gas filled surge arrester; interelectrode gap value; pulse shape properties; radioactive filling; radioactive source; Arresters; Copper; Delay; Electric breakdown; Electrodes; Filling; Pulse measurements; Pulse shaping methods; Shape measurement; Surge protection;
Conference_Titel :
Plasma Science, 2004. ICOPS 2004. IEEE Conference Record - Abstracts. The 31st IEEE International Conference on
Conference_Location :
Baltimore, MD, USA
Print_ISBN :
0-7803-8334-6
DOI :
10.1109/PLASMA.2004.1340264