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Minimization of Reactive Power Fluctuation in JT-60SA Magnet Power Supply

Minimization of Reactive Power Fluctuation in JT-60SA Magnet Power Supply
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摘要 This paper describes an asymmetric control method for the firing angle and a start/stop timing shift control of four thyristor converters called "Booster PS" to minimize the reactive power fluctuation during plasma initiation in JT-60SA. From the simulation using the "PSCAD/EMTDC" code, it is found that these control methods can drastically reduce the reac- tive power induced by the four units of the "Booster PS". In addition, the voltage fluctuation of the motor-generator connected to the "Booster PS" is expected to be suppressed. This can also contribute to achieve stable control of the JT-60SA magnet power supplies. This paper describes an asymmetric control method for the firing angle and a start/stop timing shift control of four thyristor converters called "Booster PS" to minimize the reactive power fluctuation during plasma initiation in JT-60SA. From the simulation using the "PSCAD/EMTDC" code, it is found that these control methods can drastically reduce the reac- tive power induced by the four units of the "Booster PS". In addition, the voltage fluctuation of the motor-generator connected to the "Booster PS" is expected to be suppressed. This can also contribute to achieve stable control of the JT-60SA magnet power supplies.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2013年第2期184-187,共4页 等离子体科学和技术(英文版)
基金 supported within the framework of the "Broader Approach Internationals Agreement"
关键词 JT-60SA power supply poroidal field coil reactive power fluctuation asym-metric control PSCAD/EMTDC JT-60SA, power supply, poroidal field coil, reactive power fluctuation, asym-metric control, PSCAD/EMTDC
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参考文献7

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