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The JA home team design of the ITER ECRF power supply system

机译:ITER ECRF电源系统的JA主队设计

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This paper describes the JA home team design of the ITER ECRF power supply system whose capacity is 200 MVA. The system has 16 power supply units to drive 68 gyrotrons with total radio frequency power of 68 MW for plasma heating, current drive and plasma start-up. Each unit drives gyrotrons with energy recovery system to achieve higher than 50% of efficiency. The gyrotron fast protection system is based on a 70 kV, l00 A fast Insulated Gate Bipolar Transistor (IGBT) switch composed of 70 IGBTs connected in series. The breaking capability of this switch is 360 A with a protection time less than l0 Hs. The estimated short circuit energy, in case of load fault, is 0.26 joule which is far below the a1lowable energy of l0 joule. The main power supply output voltage control is done by a.c. thyristor voltage regu1ator with state feedback control and feed forward control of beam current and voltage of the input a.c. line. In the layout design, the reduction of fire escalation risk is taken into account. The total space needed for the insta1lation is 35 m x 200 m for outdoor and 25 m x 90 m for indoor.
机译:本文介绍了容量为200 MVA的ITER ECRF电源系统的JA主页团队设计。该系统具有16个电源单元,可驱动68个回旋管,其总射频功率为68 MW,用于等离子体加热,电流驱动和等离子体启动。每个单元通过能量回收系统驱动回旋管,以实现高于50%的效率。回旋管快速保护系统基于70 kV,100 A快速绝缘栅双极晶体管(IGBT)开关,该开关由串联的70个IGBT组成。该开关的分断能力为360 A,保护时间小于10 Hs。在负载故障的情况下,估计的短路能量为0.26焦耳,远低于10焦耳的可允许能量。主电源输出电压控制由交流电完成晶闸管稳压器,具有状态反馈控制和对输入交流电的射束电流和电压的前馈控制。线。在布局设计中,要考虑降低火灾升级风险。安装所需的总空间在室外为35 m x 200 m,在室内为25 m x 90 m。

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