DocumentCode :
3342388
Title :
Comparison of two charge packet models under dc electric fields
Author :
Chen, Gang ; Yutian Wang
Author_Institution :
Tony Davies High Voltage Lab., Univ. of Southampton, Southampton, UK
fYear :
2013
fDate :
June 30 2013-July 4 2013
Firstpage :
931
Lastpage :
934
Abstract :
Charge packet under high electric dc fields has been observed in polyethylene and its formation has been closely associated with ageing and breakdown of the insulating material. To understand the mechanisms several models have been proposed. In this paper, two models originated from completely different approaches have been reviewed. The first model proposed is based on bipolar charge injection together with electric field dependent mobility. It has been found that the negative differential mobility with the electric field is essential for the formation of charge packet. On the other hand, the second model considers the change in conductivity after charge injection. By assigning different conductivities to two different zones it is possible to form a charge packet that bears some similarity with the observed features. Simulations based on these two models have been carried out and both dynamics of charge packet and resultant current in the two models are compared and discussed.
Keywords :
ageing; electric breakdown; polyethylene insulation; space charge; DC electric field; ageing; bipolar charge injection; breakdown; charge packet dynamics; charge packet formation; charge packet model; electric field-dependent mobility; insulating material; negative differential mobility; polyethylene; second model; Charge carrier processes; Conductivity; Electric fields; Equations; Materials; Mathematical model; Numerical models; Space charge; charge packet; numerical modeling; polymeric materials;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Solid Dielectrics (ICSD), 2013 IEEE International Conference on
Conference_Location :
Bologna
ISSN :
2159-1687
Print_ISBN :
978-1-4799-0807-3
Type :
conf
DOI :
10.1109/ICSD.2013.6619793
Filename :
6619793
Link To Document :
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