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The operation results and study of KSTAR pulsed electric power network for superconducting magnet power supply

机译:超导磁电源KSTAR脉冲电网的运行与研究

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摘要

To achieve 2 MA plasma current with 300 s pulse length in the Korea Superconducting Tokamak Advanced Research (KSTAR), its pulsed electric power network (PEPN) was designed. The PEPN system, which was installed in 2012, consists of an exciter, a synchronous machine (SM), and a large power variable voltage and variable frequency (VVVF) inverter. Several commissioning activities were performed on the mechanical parts of SM, and the PEPN has been used to supply AC power to the KSTAR superconducting magnet power supplies (MPSs) since entering into service in 2015. However, due to electrical faults in the VVVF inverter during certain types of plasma operations, the operation window of KSTAR has decreased, especially during high plasma current and long-pulse operations.The operation results of the KSTAR PEPN are reviewed in this paper. In addition, a comprehensive study of faults in the VVVF inverter system is performed from the viewpoint of active power variation using real plasma operational scenario results and model-based simulations. This paper also describes the design upgrade of the PEPN system for extended KSTAR operations in the future.
机译:为了在韩国超导Tokamak高级研究(KSTAR)中实现2 MA等离子电流,设计了脉冲电力网络(PEPN)。安装在2012年的Pepn系统,包括激励器,同步机(SM)和大功率可变电压和可变频率(VVVF)逆变器。在SM的机械部分进行了几项调试活动,并且PPN已被用于向KSTAR超导磁力电源(MPS)提供交流电源,因为在2015年进入服务,因此,由于VVVF逆变器中的电气故障某些类型的等离子体操作,KSTAR的操作窗口已经减少,特别是在高等离子体电流和长脉冲操作期间。本文审查了KSTAR PEPN的操作结果。此外,通过使用真实等离子体操作场景结果和基于模型的模拟的主动功率变化的视点来执行VVVF逆变器系统中的故障的综合研究。本文还介绍了未来扩展KSTAR操作的PEPN系统的设计升级。

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