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Electric field criteria for charge packet formation and movement in XLPE.

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posted on 2008-09-16, 13:43 authored by A. See, Len A. Dissado, John C. Fothergill
The formation of space charge packets in XLPE (Cross-linked polyethylene) tapes from unaged cable insulation has been studied utilising the pulsed electro-acoustic (PEA) technique. The 150 m thick sheets were studied under constant applied dc field of 120 kV/mm at a temperature of 20 C for a period of 48 hours. After an inception period of about 3.5 hours, during which heterocharge accumulates at the anode and increases the local field there, a sequence of positive charge packets were observed to transit the sample starting from near the anode. Calculation of the internal field showed that the packets required a field of 140 kV/mm for their initiation. Reduction of the applied field step-wise from 120 kV/mm to 80 kV/mm indicated that the charge packet would keep moving as long as the local field at its front exceeded 100 kV/mm, but with a reducing magnitude. A return to an applied field of 120 kV/mm confirmed that the local field required to initiate a new packet was in excess of 135 kV/mm. The results are discussed in terms of current theories of charge packet formation. The first packet appears to be a moving front of field ionisation. The generation of subsequent packets is governed by the field at the anode and the balance of charge injection and extraction process, which occur there. The nature of the negative charges produced at the ionisation front is not clear, but they are unlikely to be electrons.

History

Citation

IEEE Transactions on Dielectrics and Electrical Insulation, 2001, 8 (6), pp. 859-866.

Published in

IEEE Transactions on Dielectrics and Electrical Insulation

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

issn

1070-9878

Copyright date

2001

Available date

2008-09-16

Publisher version

http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=971438

Language

en

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