Partial discharge detection system for counting PD signals in high voltage underground cable by using FPGA technology
Currently, FPGA (Field Programmable Gate Array) technology is being widely used for signal processing and control owing to its fast digital processing capability. We have recently developed successfully a high-speed data acquisition system that combines a commercial FPGA board (ML405) with the high...
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my.uniten.dspace-305722023-12-29T15:49:37Z Partial discharge detection system for counting PD signals in high voltage underground cable by using FPGA technology Emilliano Chakrabarty C.K. Ramasamy A.K. Ghani A.B.A. 35974769600 6701755282 16023154400 24469638000 ADC 083000RB 3GSPS FPGA Technology Magnitude Field Partial Discharge Detection Peak Detector Portable Detector Real Time Processing Underground Cable VHDL Programming Cables Detectors Digital signal processing Electric power systems Electric signal systems Electricity Field programmable gate arrays (FPGA) Liquid crystal displays Partial discharges Power transmission Pulse generators Underground cables ADC 083000RB 3GSPS FPGA technology Magnitude Field Partial Discharge Detection Peak detectors Realtime processing Signal detection Currently, FPGA (Field Programmable Gate Array) technology is being widely used for signal processing and control owing to its fast digital processing capability. We have recently developed successfully a high-speed data acquisition system that combines a commercial FPGA board (ML405) with the high speed ADC in ADC 083000RB that has 8 bit pairs LVDS in resolution, sampling rate of 3 GS/s and bandwidth of 3 GHz for counting very high speed transient signals. The programming is in VHDL. This system enables direct measurement and counting of transient signals at 1-10 ns pulse width at a sampling frequency 3 GHz. The partial discharge (PD) signals in this work are simulated by using Pico Pulse generator. All the counting is performed in the FPGA without the use of oscilloscope. The count rates are displayed in the LCD monitor of the FPGA hence rendering it to be highly mobile. � 2011 Institute of Electrical Power. Final 2023-12-29T07:49:37Z 2023-12-29T07:49:37Z 2010 Conference paper 2-s2.0-80053116795 https://www.scopus.com/inward/record.uri?eid=2-s2.0-80053116795&partnerID=40&md5=88f8d4203adb8bca223b09a154ff9353 https://irepository.uniten.edu.my/handle/123456789/30572 6007226 Scopus |
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ADC 083000RB 3GSPS FPGA Technology Magnitude Field Partial Discharge Detection Peak Detector Portable Detector Real Time Processing Underground Cable VHDL Programming Cables Detectors Digital signal processing Electric power systems Electric signal systems Electricity Field programmable gate arrays (FPGA) Liquid crystal displays Partial discharges Power transmission Pulse generators Underground cables ADC 083000RB 3GSPS FPGA technology Magnitude Field Partial Discharge Detection Peak detectors Realtime processing Signal detection |
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ADC 083000RB 3GSPS FPGA Technology Magnitude Field Partial Discharge Detection Peak Detector Portable Detector Real Time Processing Underground Cable VHDL Programming Cables Detectors Digital signal processing Electric power systems Electric signal systems Electricity Field programmable gate arrays (FPGA) Liquid crystal displays Partial discharges Power transmission Pulse generators Underground cables ADC 083000RB 3GSPS FPGA technology Magnitude Field Partial Discharge Detection Peak detectors Realtime processing Signal detection Emilliano Chakrabarty C.K. Ramasamy A.K. Ghani A.B.A. Partial discharge detection system for counting PD signals in high voltage underground cable by using FPGA technology |
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Currently, FPGA (Field Programmable Gate Array) technology is being widely used for signal processing and control owing to its fast digital processing capability. We have recently developed successfully a high-speed data acquisition system that combines a commercial FPGA board (ML405) with the high speed ADC in ADC 083000RB that has 8 bit pairs LVDS in resolution, sampling rate of 3 GS/s and bandwidth of 3 GHz for counting very high speed transient signals. The programming is in VHDL. This system enables direct measurement and counting of transient signals at 1-10 ns pulse width at a sampling frequency 3 GHz. The partial discharge (PD) signals in this work are simulated by using Pico Pulse generator. All the counting is performed in the FPGA without the use of oscilloscope. The count rates are displayed in the LCD monitor of the FPGA hence rendering it to be highly mobile. � 2011 Institute of Electrical Power. |
author2 |
35974769600 |
author_facet |
35974769600 Emilliano Chakrabarty C.K. Ramasamy A.K. Ghani A.B.A. |
format |
Conference paper |
author |
Emilliano Chakrabarty C.K. Ramasamy A.K. Ghani A.B.A. |
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Emilliano |
title |
Partial discharge detection system for counting PD signals in high voltage underground cable by using FPGA technology |
title_short |
Partial discharge detection system for counting PD signals in high voltage underground cable by using FPGA technology |
title_full |
Partial discharge detection system for counting PD signals in high voltage underground cable by using FPGA technology |
title_fullStr |
Partial discharge detection system for counting PD signals in high voltage underground cable by using FPGA technology |
title_full_unstemmed |
Partial discharge detection system for counting PD signals in high voltage underground cable by using FPGA technology |
title_sort |
partial discharge detection system for counting pd signals in high voltage underground cable by using fpga technology |
publishDate |
2023 |
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1806425760116768768 |
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13.214268 |