DocumentCode :
1761433
Title :
50 years of electrical-stress control in cable accessories
Author :
Eigner, Alexander ; Semino, Sepehr
Author_Institution :
Tyco Electron. Raychem GmbH, Munich, Germany
Volume :
29
Issue :
5
fYear :
2013
fDate :
September-October 2013
Firstpage :
47
Lastpage :
55
Abstract :
Maxwell and Felici developed the theoretical basis of geometrical stress control during the period 1846 to 1862. The first practical implementation, however, was that of Nagel in Germany in 1906 (Figure 1). He developed the socalled Nagel-bushing on the basis of conductive layers [1]. Around the same time, the Swiss professor Kuhlmann invented the refractive method [2]. His aim was to decrease the electrical stress at the points where it was highest, rather than distributing it to other areas. The famous Rogowski profile was introduced in 1923. The basic principles are the same today, although the applications have become more complex, and stress control is still an important research area in HV engineering. Developments in stress control during the last 50 years (Figure 1) have been due mainly to new materials and production processes, and modern technologies, which have made possible to create cable accessories of more compact design and to improve their reliability. These developments have included impedance stress control based on heat-shrinkable tubing, and nonlinear stress control. In both cases the driving force was the need to improve the stress-control system of cable accessories.
Keywords :
cables (electric); electric variables control; reliability; Germany; HV engineering; Nagel-bushing; Rogowski profile; cable accessories; conductive layers; driving force; electrical-stress control; geometrical stress control; heat-shrinkable tubing; impedance stress control; nonlinear stress control; production processes; reliability; stress control; stress-control system; Electrodes; Materials; Permittivity; Power cable insulation; Power cables; Stress control; cable accessory; electric-stress control; refractive; zinc oxide;
fLanguage :
English
Journal_Title :
Electrical Insulation Magazine, IEEE
Publisher :
ieee
ISSN :
0883-7554
Type :
jour
DOI :
10.1109/MEI.2013.6585856
Filename :
6585856
Link To Document :
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