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一种用于微波反射测量系统的新型、可调谐、多模态微波系统。

A novel, tunable, multimodal microwave system for microwave reflectometry system.

作者信息

Wang M Y, Zhou C, Liu A D, Zhang J, Liu Z Y, Feng X, Ji J X, Li H, Lan T, Xie J L, Liu S Q, Ding W X, Mao W Z, Zhuang G, Liu W D

机构信息

Department of Physics, Nanchang University, Nanchang 330031, China.

KTX Laboratory and Department of Modern Physics, University of Science and Technology of China, Anhui, Hefei 230026, China.

出版信息

Rev Sci Instrum. 2018 Sep;89(9):093501. doi: 10.1063/1.5033968.

Abstract

Based on a new technique, a tunable, multi-channel system that covers the - (33-55 GHz) is presented in this article. It has a potential use of the Doppler backscattering system diagnostic that can measure the turbulence radial correlation and the perpendicular velocity of turbulence by changing the incident angle. The system consists primarily of a double-sideband (DSB) modulation and a multiplier, which creates four probing frequencies. The probing frequency enables the simultaneous analysis of the density fluctuations and flows at four distinct radial regions in tokamak plasma. The amplitude of the probing frequency can be adjusted by the initial phase of the intermediate frequency (IF) input from the double-sideband, and the typical flatness is less than 10 dB. The system was tested in the lab with a rotating grating, and the results show that the system can operate in the frequency range of 33-55 GHz with a Q-band multitude and that the power of each channel can be adjusted by the phase of the IF input of DSB.

摘要

基于一种新技术,本文提出了一种可调谐的多通道系统,其覆盖范围为33 - 55 GHz。它在多普勒背散射系统诊断方面具有潜在用途,该诊断可通过改变入射角来测量湍流径向相关性和湍流的垂直速度。该系统主要由双边带(DSB)调制器和一个乘法器组成,可产生四个探测频率。这些探测频率能够同时分析托卡马克等离子体中四个不同径向区域的密度涨落和流场。探测频率的幅度可通过双边带输入的中频(IF)的初始相位进行调节,典型平坦度小于10 dB。该系统在实验室中使用旋转光栅进行了测试,结果表明该系统能够在33 - 55 GHz频率范围内以Q波段多路运行,并且每个通道的功率可通过DSB的IF输入相位进行调节。

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