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Simultaneous projection and detection system of four different frequencies for microwave imaging reflectometry in Large Helical Device

机译:大型螺旋装置中微波成像反射法的四种不同频率的同时投影和检测系统

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摘要

A simultaneous projection/detection system of four different frequencies for microwave imaging reflectometry (MIR) was developed for three-dimensional observation of electron density fluctuations in the Large Helical Device (LHD). The microwave with four frequency components at 60.410, 61.808, 63.008, and 64.610 GHz is projected in a continuous-wave mode to illuminate the target LHD plasma. A two-dimensional horn-antenna mixer array (2D HMA) receives the reflected wave from the plasma as well as the wave from the local oscillator operating at 55.800 GHz. The first intermediate frequency (IF) signals at 4.610, 6.008, 7.208, and 8.810 GHz were confirmed to be obtained by downconversion of these microwaves using the 2D HMA. Each of these first IF components is filtered from each other and downconverted again for the superheterodyne detection. It was confirmed that both the amplitudes and the phases of the detected signals reflect the fluctuations in LHD plasmas.
机译:开发了用于微波成像反射法(MIR)的四个不同频率的同时投影/检测系统,用于三维观测大型螺旋装置(LHD)中的电子密度波动。具有60.410、61.808、63.008和64.610 GHz四个频率分量的微波以连续波模式投射,以照射目标LHD等离子体。二维喇叭天线混频器阵列(2D HMA)接收来自等离子体的反射波以及来自运行在55.800 GHz的本地振荡器的波。通过使用2D HMA对这些微波进行下变频,可以确认获得了4.610、6.008、7.208和8.810 GHz的第一中频(IF)信号。这些第一个IF分量中的每一个都相互过滤并再次下变频以进行超外差检测。可以确认,检测信号的振幅和相位都反映了LHD等离子体的波动。

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