Module 2
 
   References
2.1
Mosch, Wolfgang and Hauschild, Wolfgang "High Voltage Insulation System with SF6" Dr. Alfred Hüthig Verlag, West Germany (1979) (in German).
2.2
 Alston, L.L., "High Voltage Technology", Oxford University Press (1968)
2.3
Latham, R.V., "Prebreakdown electron emission", IEEE Trans. EI-18 (1993) 3, pp. 194-203
2.4 Latham R.V., "A new perspective of the origin of prebreakdown electron emission process", IEEE Trans. EI-23 (Feb. 1988) 1, pp. 9-16
2.5 Engelmann, Eberhard "A contribution to the discharge behaviour of large electrodes having field distortions in air with positive switching surge" Dissertation, TU Dresden (1981) (in German)
2.6 Raether, H. "Die Entwicklung der Elektronon in den Funkenkanal" Zeitschrift für Angewandte Physik, 112 (1939) pp. 464-489 (in German)
2.7

Raether, H. "Electron Avalanches and Breakdown in Gases" Butterworths, London (1964).

2.8 Wanger, K.H. "Investigation of the development of electron avalanche in plasma channel by high gain image intensifier and image converter streak shutter technique" Zeitschrift für Physik, 189 (1966) pp. 465-515 (in German) .
2.9 Alston, L.L. "High Voltage Technology" Oxford University Press (1968) .
2.10 
Meek, J.M. and Craggs, J.D. "Electrical Breakdown in Gases" John Wiley & Sons Ltd. (1978).
2.11 
Rees, D.B., Ph.D. Thesis, University of Wales, U.K.(1963)
2.12 
Bandel, H.W. "Measurement of the current during the formative time lag of sparks in Uniform fields in Air" Physical Review, 95 (1954) 5, pp. 1117-1125.
2.13 
Hoger, H. "Dielectrics", 1 (1963) p. 94.
2.14 
Mielke, Heinz "Increase of current with time during static breakdown voltage in air, hydrogen and oxygen", Zeitschrift für Angewandte Physik, 11 (1959) 11, pp. 409-414 (in German) .
2.15 
Dakin, T.W., Luxa G., Oppermann, G., Vigreux, J., Wind G. and Winkelnkemper, H. "Breakdown in gases in uniform fields, Paschen's curves for nitrogen, air and Sulphur Hexafluoride" Electra, 32 (1974), pp. 61-82.
2.16
Trichel, G.W. "The mechanism of the positive point-to-plane corona in air at atmospheric pressure" Physical review, 55 (1939), pp. 382-390.
2.17
Woboditsch, W. "The characteristics of technical discharge gaps having extremely nonuniform field" Wissenchaftliche Zeitschrift der T.H. Dresden, 8 (1958/59) H.4, p. 870 (in German)
2.18
Lemke, Eberhardt "Breakdown mechanism and characterstics of nonuniform field electrode configurations in air for switching surges" Dissertation, TU Dresden (1967) (in German).
2.19
Lemke, Eberhardt "The breakdown mechanism in air with switching surges" Wissenschaftliche Zeitschrift der Technischen Universität Dresden. 17 (1968) H. 1, S. 105 (in German).
2.20
Nasser, Essam "Discharge development at positive point in nonuniform field in atmospheric air" Dissertation, TU Berlin (1958) also in Archiev für Elektrotechinik, 44 (1959) 3, pp.157-176, (in German)
2.21
LesRenardieres Group, "Physics of Discharges" "Negative Discharges in Long Air Gaps at Les Renardieres" 1978 Results and conclusions, Electra, CIGRE, No. 74 (1981)
2.22
Uhlmann, Erich "Electrical breakdown in air between concentric cylinders" Archiev für Elektrotechnik, 23 (1930) 3, pp. 323-350 (in German)
2.23   Kufel, E., Zaengl, W.S. "High Voltage Engineering" Fundamentals, Pergamon Press (1984)