Current pulse shaping of the load current on PTS

The typical rise time of PTS machine is ∼110 ns with about 10 MA peak current under short pulse mode when all 24 modules discharge simultaneously. By distributing the trigger times of 12 laser beams logically and adjusting the statues of the pulse output switches, longer rise-time pulse can be obtai...

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Main Authors: Minghe Xia, Fengping Li, Ce Ji, Bing Wei, Shuping Feng, Meng Wang, Weiping Xie
Format: Article
Language:English
Published: AIP Publishing LLC 2016-02-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.4942816
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spelling doaj-0584c144337d496abe09dd2f8ceb0ac02020-11-24T21:08:09ZengAIP Publishing LLCAIP Advances2158-32262016-02-0162025319025319-610.1063/1.4942816074602ADVCurrent pulse shaping of the load current on PTSMinghe Xia0Fengping Li1Ce Ji2Bing Wei3Shuping Feng4Meng Wang5Weiping Xie6Key Laboratory of Pulsed Power, Institute of Fluid Physics, CAEP, P.O. Box 919-108, Mianyang 621900, ChinaKey Laboratory of Pulsed Power, Institute of Fluid Physics, CAEP, P.O. Box 919-108, Mianyang 621900, ChinaKey Laboratory of Pulsed Power, Institute of Fluid Physics, CAEP, P.O. Box 919-108, Mianyang 621900, ChinaKey Laboratory of Pulsed Power, Institute of Fluid Physics, CAEP, P.O. Box 919-108, Mianyang 621900, ChinaKey Laboratory of Pulsed Power, Institute of Fluid Physics, CAEP, P.O. Box 919-108, Mianyang 621900, ChinaKey Laboratory of Pulsed Power, Institute of Fluid Physics, CAEP, P.O. Box 919-108, Mianyang 621900, ChinaKey Laboratory of Pulsed Power, Institute of Fluid Physics, CAEP, P.O. Box 919-108, Mianyang 621900, ChinaThe typical rise time of PTS machine is ∼110 ns with about 10 MA peak current under short pulse mode when all 24 modules discharge simultaneously. By distributing the trigger times of 12 laser beams logically and adjusting the statues of the pulse output switches, longer rise-time pulse can be obtained on the PTS facility. Based on the required pulse shape, whole circuit simulations will be used to calculate the trigger times of each laser triggering gas switch and the status of the pulse output switches. The rise time of the current is determined by the time difference between the first and last trigged laser triggering gas switches. In order to trigger the laser triggering gas switch, sufficient laser power is needed to be sent into the gap of the gas switches. The gas pressure and voltage difference on the two electrodes of the gas switches also affect the triggering of the gas switches, and the voltage added on the gas switch is determined by its transition time. Traditionally the trigger time difference should be less than the transition time of the two neighboring modules. A new simulation model of PTS shows one can break this transition time limits. Series of current pulse shaping experiments have been investigated on the PTS (Primary Test Stand). As results, more than 5 MA peak current were successfully achieved on the load with a rise time of 600 ns. This study and experiments of the pulse shaping on PTS demonstrate the adaptable ability of the PTS for offering different waveform of mega ampere current pulse for different research purpose.http://dx.doi.org/10.1063/1.4942816
collection DOAJ
language English
format Article
sources DOAJ
author Minghe Xia
Fengping Li
Ce Ji
Bing Wei
Shuping Feng
Meng Wang
Weiping Xie
spellingShingle Minghe Xia
Fengping Li
Ce Ji
Bing Wei
Shuping Feng
Meng Wang
Weiping Xie
Current pulse shaping of the load current on PTS
AIP Advances
author_facet Minghe Xia
Fengping Li
Ce Ji
Bing Wei
Shuping Feng
Meng Wang
Weiping Xie
author_sort Minghe Xia
title Current pulse shaping of the load current on PTS
title_short Current pulse shaping of the load current on PTS
title_full Current pulse shaping of the load current on PTS
title_fullStr Current pulse shaping of the load current on PTS
title_full_unstemmed Current pulse shaping of the load current on PTS
title_sort current pulse shaping of the load current on pts
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2016-02-01
description The typical rise time of PTS machine is ∼110 ns with about 10 MA peak current under short pulse mode when all 24 modules discharge simultaneously. By distributing the trigger times of 12 laser beams logically and adjusting the statues of the pulse output switches, longer rise-time pulse can be obtained on the PTS facility. Based on the required pulse shape, whole circuit simulations will be used to calculate the trigger times of each laser triggering gas switch and the status of the pulse output switches. The rise time of the current is determined by the time difference between the first and last trigged laser triggering gas switches. In order to trigger the laser triggering gas switch, sufficient laser power is needed to be sent into the gap of the gas switches. The gas pressure and voltage difference on the two electrodes of the gas switches also affect the triggering of the gas switches, and the voltage added on the gas switch is determined by its transition time. Traditionally the trigger time difference should be less than the transition time of the two neighboring modules. A new simulation model of PTS shows one can break this transition time limits. Series of current pulse shaping experiments have been investigated on the PTS (Primary Test Stand). As results, more than 5 MA peak current were successfully achieved on the load with a rise time of 600 ns. This study and experiments of the pulse shaping on PTS demonstrate the adaptable ability of the PTS for offering different waveform of mega ampere current pulse for different research purpose.
url http://dx.doi.org/10.1063/1.4942816
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