Circuit analysis on the inductance evolution based on electrical signal from various type plasma focus device

Numerous configurations of plasma focus devices (PFD) have been introduced around the globe. The distinct electrode configuration of the PFD will give out different inductance profile. A circuit analysis has been done to study on the significant difference between the inductance evolution in a coaxi...

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Main Authors: Mohamad, Saiful Najmee, Ismail, Fairuz Diana, Ahmad Noorden, Ahmad Fakhrurrazi, Haider, Zuhaib, Ali, Jalil
Format: Conference or Workshop Item
Language:English
English
English
Published: Melville, NY 2017
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Online Access:http://irep.iium.edu.my/53201/19/53201_Circuit%20analysis%20on%20the%20inductance%20evolution_abstract_complete.pdf
http://irep.iium.edu.my/53201/2/53201_Circuit%20analysis%20on%20the%20inductance_SCOPUS.pdf
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spelling my.iium.irep.532012019-08-23T01:45:26Z http://irep.iium.edu.my/53201/ Circuit analysis on the inductance evolution based on electrical signal from various type plasma focus device Mohamad, Saiful Najmee Ismail, Fairuz Diana Ahmad Noorden, Ahmad Fakhrurrazi Haider, Zuhaib Ali, Jalil QC Physics Numerous configurations of plasma focus devices (PFD) have been introduced around the globe. The distinct electrode configuration of the PFD will give out different inductance profile. A circuit analysis has been done to study on the significant difference between the inductance evolution in a coaxial discharge based on various published results of PFD. The discharge current signal, tube voltage and current derivative of the particular shots from distinct PFD was digitized and analyze. The investigation was piloted for three different types of PFD. It was observed that there is a significant difference for the normalize inductance profile during the discharge between the individual PFD with different electrode configuration. The depletion of the radial start current with the normalised inductance development for Mather type (PF-1000) is found to be 25.9% from static discharge. The current depletion continues to drop 1.1% and 1.3% more for a Spherical type (PNK-13) and Filippov type (PF-3) respectively. Melville, NY 2017-03-30 Conference or Workshop Item PeerReviewed application/pdf en http://irep.iium.edu.my/53201/19/53201_Circuit%20analysis%20on%20the%20inductance%20evolution_abstract_complete.pdf application/pdf en http://irep.iium.edu.my/53201/2/53201_Circuit%20analysis%20on%20the%20inductance_SCOPUS.pdf application/pdf en http://irep.iium.edu.my/53201/13/53201%20Circuit%20analysis%20on%20the%20inductance%20evolution%20based%20WOS.pdf Mohamad, Saiful Najmee and Ismail, Fairuz Diana and Ahmad Noorden, Ahmad Fakhrurrazi and Haider, Zuhaib and Ali, Jalil (2017) Circuit analysis on the inductance evolution based on electrical signal from various type plasma focus device. In: 9th International Conference on Plasma Science and Applications (ICPSA 2016), 28th-30th Nov. 2016, Langkawi. https://aip-scitation-org.ezproxy.um.edu.my/toc/apc/1824/1?expanded=1824 10.1063/1.4978838
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
English
English
topic QC Physics
spellingShingle QC Physics
Mohamad, Saiful Najmee
Ismail, Fairuz Diana
Ahmad Noorden, Ahmad Fakhrurrazi
Haider, Zuhaib
Ali, Jalil
Circuit analysis on the inductance evolution based on electrical signal from various type plasma focus device
description Numerous configurations of plasma focus devices (PFD) have been introduced around the globe. The distinct electrode configuration of the PFD will give out different inductance profile. A circuit analysis has been done to study on the significant difference between the inductance evolution in a coaxial discharge based on various published results of PFD. The discharge current signal, tube voltage and current derivative of the particular shots from distinct PFD was digitized and analyze. The investigation was piloted for three different types of PFD. It was observed that there is a significant difference for the normalize inductance profile during the discharge between the individual PFD with different electrode configuration. The depletion of the radial start current with the normalised inductance development for Mather type (PF-1000) is found to be 25.9% from static discharge. The current depletion continues to drop 1.1% and 1.3% more for a Spherical type (PNK-13) and Filippov type (PF-3) respectively.
format Conference or Workshop Item
author Mohamad, Saiful Najmee
Ismail, Fairuz Diana
Ahmad Noorden, Ahmad Fakhrurrazi
Haider, Zuhaib
Ali, Jalil
author_facet Mohamad, Saiful Najmee
Ismail, Fairuz Diana
Ahmad Noorden, Ahmad Fakhrurrazi
Haider, Zuhaib
Ali, Jalil
author_sort Mohamad, Saiful Najmee
title Circuit analysis on the inductance evolution based on electrical signal from various type plasma focus device
title_short Circuit analysis on the inductance evolution based on electrical signal from various type plasma focus device
title_full Circuit analysis on the inductance evolution based on electrical signal from various type plasma focus device
title_fullStr Circuit analysis on the inductance evolution based on electrical signal from various type plasma focus device
title_full_unstemmed Circuit analysis on the inductance evolution based on electrical signal from various type plasma focus device
title_sort circuit analysis on the inductance evolution based on electrical signal from various type plasma focus device
publisher Melville, NY
publishDate 2017
url http://irep.iium.edu.my/53201/19/53201_Circuit%20analysis%20on%20the%20inductance%20evolution_abstract_complete.pdf
http://irep.iium.edu.my/53201/2/53201_Circuit%20analysis%20on%20the%20inductance_SCOPUS.pdf
http://irep.iium.edu.my/53201/13/53201%20Circuit%20analysis%20on%20the%20inductance%20evolution%20based%20WOS.pdf
http://irep.iium.edu.my/53201/
https://aip-scitation-org.ezproxy.um.edu.my/toc/apc/1824/1?expanded=1824
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score 13.160551