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Measurements of satellite modes in 140 GHz wendelstein 7-X gyrotrons: An approach to an electronic stability control

机译:140 GHz Wendelstein 7-X旋流加速器中卫星模式的测量:一种电子稳定性控制方法

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The stellarator Wendelstein 7-X (W7-X) uses electron cyclotron resonance heating (ECRH) by 140 GHz highpower microwave sources (gyrotrons) for plasma generation and as primary heating method. At the limit of operational stability, parasitic and satellite modes simultaneously excited to the working mode are converted to stray radiation in the gyrotron, resulting in a reduced efficiency and mostly in a mode loss. Hence the stray radiation level by these modes is proposed as an indicator for the operational stability. A feedback control system ensuring stable operation of the gyrotrons at highest possible output power and a fast mode recovery after a mode loss, is desirable for the ECRH on W7-X. Consequently shot spectrograms and the signal of a RF detector were examined to identify a reliable mode-loss-precursor in the stray radiation at the gyrotron relief window for the targeted control system. This information then can be used to derive and implement a control algorithm on a field programmable gate array (FPGA).
机译:恒星旋转器Wendelstein 7-X(W7-X)使用140 GHz高功率微波源(回旋管)的电子回旋共振加热(ECRH)来产生等离子体并用作主要加热方法。在操作稳定性的极限下,同时激发到工作模式的寄生模式和卫星模式在回旋加速器中转换为杂散辐射,从而导致效率降低,并且主要是模式损耗。因此,提出了通过这些模式的杂散辐射水平作为操作稳定性的指标。对于W7-X上的ECRH,需要一种反馈控制系统,该系统可确保回旋管在最大可能的输出功率下稳定运行,并在模式丢失后快速恢复模式。因此,检查了发射光谱图和RF检测器的信号,以在目标控制系统的回旋加速器释放窗口处的杂散辐射中识别出可靠的模式损耗前体。然后,该信息可用于在现场可编程门阵列(FPGA)上导出和实现控制算法。

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