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首页> 外文期刊>Fusion Engineering and Design >New features of the ECH control system on DⅢ-D and impact of power modulation on collector loading
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New features of the ECH control system on DⅢ-D and impact of power modulation on collector loading

机译:DⅢ-D上ECH控制系统的新功能以及功率调制对集电极负载的影响

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In order to increase the reliability and improve the availability of electron cyclotron heating (ECH) and current drive during a plasma shot, an adaptive gyrotron command generator has been designed and implemented in all gyrotron systems on the DIII-D tokamak. This adaptive real-time generator is able to detect imminent faults, including gyrotron body overcurrent faults that can develop in a few microseconds, block faults, and restart RF generation within 10-30 ms, faster than the DIII-D energy confinement time. The adoption of this adaptive generator has substantially improved the performance of a depressed-collector gyrotron with recurrent body current faults, and has assisted the ECH system to achieve a record reliability of 95% during the last experimental campaign. The impact of power modulation on the collector loading of a depressed-collector gyrotron has been experimentally studied using calorimetry and collector maps taken by a diagnostic developed in-house. While lowering the modulation duty cycle kept the collector power constant as a result of low beam-wave efficiency during the modulation low state, an observed power redistribution inside the collector increased the peak collector power density, which reached levels above the manufacturer power density limit for low duty cycles.
机译:为了提高可靠性并提高等离子发射期间电子回旋加速器(ECH)和电流驱动的可用性,已在DIII-D托卡马克的所有回旋管系统中设计并实现了自适应回旋管指令发生器。这种自适应实时发生器能够检测即将发生的故障,包括回旋体过电流故障,这些故障可能会在几微秒内发生,阻塞故障并在10-30毫秒内重新生成RF,比DIII-D能量限制时间要快。这种自适应发电机的采用大大改善了具有反复体电流故障的低压集电极回旋管的性能,并在上一次实验中帮助ECH系统达到了创纪录的95%的可靠性。功率调制对低压集电极回旋管的集电极负载的影响已通过量热法和内部由诊断机构开发的集电极图进行了实验研究。降低调制占空比时,由于调制低状态期间的低束波效率,使集电极功率保持恒定,而在集电极内部观察到的功率重新分配增加了峰值集电极功率密度,该峰值达到了制造商针对功率密度限制的水平低占空比。

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