Control system for RF-driven negative ion source experimental setup at HUST

•The CompactRIO system is reliable and could achieve high-speed data collection.•The queue and event software structure allows the control code to be flexible.•TCP/IP performs better than shared variable method for mass data transmission.•The method for lowering the peak RF reflected power has been...

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Veröffentlicht in:Fusion engineering and design 2017-03, Vol.116, p.47-51
Hauptverfasser: Li, Dong, Wang, Xiaomin, Zhao, Peng, Liu, Kaifeng, Zhang, Lige, Yue, Haikun, Chen, Dezhi, Zuo, Chen
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container_end_page 51
container_issue
container_start_page 47
container_title Fusion engineering and design
container_volume 116
creator Li, Dong
Wang, Xiaomin
Zhao, Peng
Liu, Kaifeng
Zhang, Lige
Yue, Haikun
Chen, Dezhi
Zuo, Chen
description •The CompactRIO system is reliable and could achieve high-speed data collection.•The queue and event software structure allows the control code to be flexible.•TCP/IP performs better than shared variable method for mass data transmission.•The method for lowering the peak RF reflected power has been discussed and given. An experimental setup of RF-driven negative ion source has been built at the Huazhong University of Science and Technology (HUST). The control system for this setup is responsible for RF loading, gas feeding, filament heating, filament DC bias, data collection and Langmuir probe triggering during plasma production. To research influences on the plasma ignition of gas puff and RF power loading, the control system should be of flexible operating sequence, high-speed data collection and reliable data transmission. The general control unit (GCU) adopts a CompactRIO system, which performs high-speed data collection for gas pressure and RF power. The host control program adopts a queue and event structure for flexible operation, and TCP/IP method is applied for mass data transmission. The development of the host control program is described in detail. The test results of the shared variable and TCP/IP methods are presented, as well as data showing the advantages of the TCP/IP method. The experiment results with two different sequences of plasma production are given and discussed here.
doi_str_mv 10.1016/j.fusengdes.2016.12.024
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An experimental setup of RF-driven negative ion source has been built at the Huazhong University of Science and Technology (HUST). The control system for this setup is responsible for RF loading, gas feeding, filament heating, filament DC bias, data collection and Langmuir probe triggering during plasma production. To research influences on the plasma ignition of gas puff and RF power loading, the control system should be of flexible operating sequence, high-speed data collection and reliable data transmission. The general control unit (GCU) adopts a CompactRIO system, which performs high-speed data collection for gas pressure and RF power. The host control program adopts a queue and event structure for flexible operation, and TCP/IP method is applied for mass data transmission. The development of the host control program is described in detail. The test results of the shared variable and TCP/IP methods are presented, as well as data showing the advantages of the TCP/IP method. 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An experimental setup of RF-driven negative ion source has been built at the Huazhong University of Science and Technology (HUST). The control system for this setup is responsible for RF loading, gas feeding, filament heating, filament DC bias, data collection and Langmuir probe triggering during plasma production. To research influences on the plasma ignition of gas puff and RF power loading, the control system should be of flexible operating sequence, high-speed data collection and reliable data transmission. The general control unit (GCU) adopts a CompactRIO system, which performs high-speed data collection for gas pressure and RF power. The host control program adopts a queue and event structure for flexible operation, and TCP/IP method is applied for mass data transmission. The development of the host control program is described in detail. The test results of the shared variable and TCP/IP methods are presented, as well as data showing the advantages of the TCP/IP method. 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subjects CompactRIO
Control system
Control systems
Data collection
Data transmission
Gas pressure
High speed
Plasma
Queue structure
Queues
RF-driven ion source
TCP/IP
TCP/IP (protocol)
title Control system for RF-driven negative ion source experimental setup at HUST
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