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New developments of the ASDEX Upgrade tokamak microwave reflectometer

机译:ASDEX升级版托卡马克微波反射仪的新进展

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The ASDEX Upgrade broadband microwave reflectometry system uses frequency modulation of a continuous wave (FM-CW). With a monostatic antenna configuration optimised for eliminating spurious reflections, the system can probe the high and low field sides of the plasma (using both O- and X-modes) covering the density range from 0.3 to 6.76 x 10~(19) m~3. A combination of solid state fast tuneable microwave sources (Hyperabrupt Tuned Oscillators, HTO) with active and passive doublers are used. During the recent shutdown period several improvements were made. A new W band (75-110 GHz) channel was installed at the low field side to extend the density range to 15 x 10~(19) m ~(-3). A broadband heterodyne detection was designed to improve detection, which is required due to high losses and low power available for this band. A similar detection scheme was implemented to all existing V band channels. Both systems can perform a full band sweep in 10 μs. Also a new Q (35-50 GHz) band O-mode channel with fixed frequency was installed for on-line fast monitoring the L-H transition based on the reduction of the plasma density fluctuations. The control system was upgraded with five new control boards for fixed frequency operation of the reflectometer. The new control software enables the operation in three different modes: broadband, fixed frequency and a mixed mode. A new dedicated data acquisition system came into operation to replace the existing CAMAC/VME configuration, enabling high sampling rate (1 GSPS). Advanced digital signal processing techniques were developed to obtain density
机译:ASDEX升级宽带微波反射仪系统使用连续波(FM-CW)的频率调制。通过优化的单静态天线配置可消除杂散反射,该系统可以探测等离子体的高场侧和低场侧(同时使用O和X模式),覆盖密度范围从0.3到6.76 x 10〜(19)m〜 3。固态快速可调微波源(超突变调谐振荡器,HTO)与有源和无源倍频器结合使用。在最近的停机期间,进行了一些改进。在低场侧安装了一个新的W波段(75-110 GHz)通道,以将密度范围扩展到15 x 10〜(19)m〜(-3)。宽带外差检测旨在提高检测效率,这是由于该频段的高损耗和低功率所必需的。对所有现有的V波段通道实施了类似的检测方案。两种系统都可以在10μs内完成全频带扫描。还安装了具有固定频率的新Q(35-50 GHz)频段O模式通道,用于基于等离子体密度波动的减少在线快速监视L-H跃迁。控制系统升级了五个新的控制板,用于反射计的固定频率操作。新的控制软件可在三种不同模式下运行:宽带,固定频率和混合模式。新的专用数据采集系统投入运行,以取代现有的CAMAC / VME配置,从而实现高采样率(1 GSPS)。开发了先进的数字信号处理技术以获得密度

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