首页> 外文期刊>Review of Scientific Instruments >Oblique electron-cyclotron-emission radial and phase detector of rotating magnetic islands applied to alignment and modulation of electron-cyclotron-current-drive for neoclassical tearing mode stabilization
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Oblique electron-cyclotron-emission radial and phase detector of rotating magnetic islands applied to alignment and modulation of electron-cyclotron-current-drive for neoclassical tearing mode stabilization

机译:旋转磁岛的倾斜电子回旋辐射径向和相位检测器,用于电子回旋电流驱动的对准和调制,以稳定新古典的撕裂模式

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摘要

A two channel oblique electron cyclotron emission (ECE) radiometer was installed on the DIII-D tokamak and interfaced to four gyrotrons. Oblique ECE was used to toroidally and radially localize rotating magnetic islands and so assist their electron cyclotron current drive (ECCD) stabilization. In particular, after manipulations operated by the interfacing analogue circuit, the oblique ECE signals directly modulated the current drive in synch with the island rotation and in phase with the island O-point, for a more efficient stabilization. Apart from the different toroidal location, the diagnostic view is identical to the ECCD launch direction, which greatly simplified the real-time use of the signals. In fact, a simple toroidal extrapolation was sufficient to lock the modulation to the O-point phase. This was accomplished by a specially designed phase shifter of nearly flat response over the 1–7 kHz range. Moreover, correlation analysis of two channels slightly above and below the ECCD frequency allowed checking the radial alignment to the island, based on the fact that for satisfactory alignment the two signals are out of phase.
机译:在DIII-D托卡马克上安装了两通道倾斜电子回旋辐射(ECE)辐射计,并与四个回旋加速器接口。倾斜的ECE用于对旋转的磁岛进行环形定位和径向定位,从而有助于其电子回旋加速器电流驱动(ECCD)稳定。特别是,在通过接口模拟电路进行操作之后,倾斜的ECE信号会与孤岛旋转同步并与孤岛O点同相,直接调制电流驱动器,从而实现更有效的稳定。除了环形位置不同之外,诊断视图还与ECCD发射方向相同,从而大大简化了信号的实时使用。实际上,简单的环形外推就足以将调制锁定到O点相位。这是通过专门设计的移相器实现的,该移相器在1–7 kHz范围内具有几乎平坦的响应。此外,基于两个信号异相的事实,对略高于ECCD频率的两个通道的相关性分析允许检查到孤岛的径向对准。

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