MATLAB and VHDL model of real time partial discharge detection using FPGA technology

This research involves evaluating the use of FPGA for the detection and counting of partial discharge (PD) signals in underground cables (XLPE cables). PD detection model was designed one using MATLAB and another using VHDL. The pulse signal from the cable was processed and counted using peak detect...

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Main Authors: Emilliano, Chakrabarty, C.K., Ramasamy, A.K., Ghani, A.B.A.
Format: Conference Paper
Language:en_US
Published: 2017
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spelling my.uniten.dspace-57162017-12-14T08:12:45Z MATLAB and VHDL model of real time partial discharge detection using FPGA technology Emilliano Chakrabarty, C.K. Ramasamy, A.K. Ghani, A.B.A. This research involves evaluating the use of FPGA for the detection and counting of partial discharge (PD) signals in underground cables (XLPE cables). PD detection model was designed one using MATLAB and another using VHDL. The pulse signal from the cable was processed and counted using peak detector and FPGA technology. The peak detector placed inside the VHDL program when the program of PD detection model was designed using VHDL program. Then, the model designed was used for testing and validation. Both models are able detect the PD signals and the results obtained are similar. © 2011 IEEE. 2017-12-08T06:45:40Z 2017-12-08T06:45:40Z 2011 Conference Paper 10.1109/ICOS.2011.6079262 en_US 2011 IEEE Conference on Open Systems, ICOS 2011 2011, Article number 6079262, Pages 395-400
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 This research involves evaluating the use of FPGA for the detection and counting of partial discharge (PD) signals in underground cables (XLPE cables). PD detection model was designed one using MATLAB and another using VHDL. The pulse signal from the cable was processed and counted using peak detector and FPGA technology. The peak detector placed inside the VHDL program when the program of PD detection model was designed using VHDL program. Then, the model designed was used for testing and validation. Both models are able detect the PD signals and the results obtained are similar. © 2011 IEEE.
format Conference Paper
author Emilliano
Chakrabarty, C.K.
Ramasamy, A.K.
Ghani, A.B.A.
spellingShingle Emilliano
Chakrabarty, C.K.
Ramasamy, A.K.
Ghani, A.B.A.
MATLAB and VHDL model of real time partial discharge detection using FPGA technology
author_facet Emilliano
Chakrabarty, C.K.
Ramasamy, A.K.
Ghani, A.B.A.
author_sort Emilliano
title MATLAB and VHDL model of real time partial discharge detection using FPGA technology
title_short MATLAB and VHDL model of real time partial discharge detection using FPGA technology
title_full MATLAB and VHDL model of real time partial discharge detection using FPGA technology
title_fullStr MATLAB and VHDL model of real time partial discharge detection using FPGA technology
title_full_unstemmed MATLAB and VHDL model of real time partial discharge detection using FPGA technology
title_sort matlab and vhdl model of real time partial discharge detection using fpga technology
publishDate 2017
_version_ 1644493756902146048
score 13.214268