Dissipation factor measurement of PILC insulation at UHF

In this paper, dissipation factor measurement of Paper Insulated Lead Covered (PILC) cable insulation at ultra high frequency (UHF) is described. The material under test (MUT) is clamped between two copper sheets to form a capacitor, which is connected to the Advantest R3767CG vector network analyze...

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Main Authors: Raymond, W.J.K., Chakrabarty, C.K., Hock, G.C., Ghani, A.B., Zarim, Z.A.A.
Format: Conference Paper
Language:en_US
Published: 2017
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spelling my.uniten.dspace-57092017-12-15T00:41:36Z Dissipation factor measurement of PILC insulation at UHF Raymond, W.J.K. Chakrabarty, C.K. Hock, G.C. Ghani, A.B. Zarim, Z.A.A. In this paper, dissipation factor measurement of Paper Insulated Lead Covered (PILC) cable insulation at ultra high frequency (UHF) is described. The material under test (MUT) is clamped between two copper sheets to form a capacitor, which is connected to the Advantest R3767CG vector network analyzer (VNA) to measure its input impedance at the resonant frequency. From the input impedance, the dissipation factor is calculated. The calculated values are then compared with data obtained from commercial system to validate the proposed method. © 2012 IEEE. 2017-12-08T06:45:35Z 2017-12-08T06:45:35Z 2012 Conference Paper 10.1109/ISMS.2012.55 en_US Proceedings - 3rd International Conference on Intelligent Systems Modelling and Simulation, ISMS 2012 2012, Article number 6169692, Pages 157-160
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language en_US
description In this paper, dissipation factor measurement of Paper Insulated Lead Covered (PILC) cable insulation at ultra high frequency (UHF) is described. The material under test (MUT) is clamped between two copper sheets to form a capacitor, which is connected to the Advantest R3767CG vector network analyzer (VNA) to measure its input impedance at the resonant frequency. From the input impedance, the dissipation factor is calculated. The calculated values are then compared with data obtained from commercial system to validate the proposed method. © 2012 IEEE.
format Conference Paper
author Raymond, W.J.K.
Chakrabarty, C.K.
Hock, G.C.
Ghani, A.B.
Zarim, Z.A.A.
spellingShingle Raymond, W.J.K.
Chakrabarty, C.K.
Hock, G.C.
Ghani, A.B.
Zarim, Z.A.A.
Dissipation factor measurement of PILC insulation at UHF
author_facet Raymond, W.J.K.
Chakrabarty, C.K.
Hock, G.C.
Ghani, A.B.
Zarim, Z.A.A.
author_sort Raymond, W.J.K.
title Dissipation factor measurement of PILC insulation at UHF
title_short Dissipation factor measurement of PILC insulation at UHF
title_full Dissipation factor measurement of PILC insulation at UHF
title_fullStr Dissipation factor measurement of PILC insulation at UHF
title_full_unstemmed Dissipation factor measurement of PILC insulation at UHF
title_sort dissipation factor measurement of pilc insulation at uhf
publishDate 2017
_version_ 1644493755164655616
score 13.211869