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Microwave Reflectometry on HL-2A Tokamak
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作者 LIU Zetian XIAO Weiwen DING Xuantong CAO Jianyong SHI Zhongbing LI Yingliang LU Jie LUO Cuiwen 《Southwestern Institute of Physics Annual Report》 2005年第1期32-34,共3页
One of the most important electron density diagnostics, microwave reflectometry, has been developed on many large and medium nuclear fusion devices in recent years . Not only the electron density profiles with high te... One of the most important electron density diagnostics, microwave reflectometry, has been developed on many large and medium nuclear fusion devices in recent years . Not only the electron density profiles with high temporal and spatial resolutions, but also the profiles of plasma rotation and turbulence can be obtained with this diagnostic system. 展开更多
关键词 microwave scanning frequency RF modulation reflection and receiver
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Broadband photonic ADC for microwave photonics-based radar receiver 被引量:4
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作者 Jiaqian Yang Shangyuan Li +3 位作者 Xuedi Xiao Dexin Wu Xiaoxiao Xue Xiaoping Zheng 《Chinese Optics Letters》 SCIE EI CAS CSCD 2018年第6期39-43,共5页
A broadband photonic analog-to-digital converter(ADC) for X-band radar applications is proposed and experimentally demonstrated. An X-band signal with arbitrary waveform and a bandwidth up to 2 GHz can be synchronou... A broadband photonic analog-to-digital converter(ADC) for X-band radar applications is proposed and experimentally demonstrated. An X-band signal with arbitrary waveform and a bandwidth up to 2 GHz can be synchronously sampled and processed due to the optical sampling structure. In the experiment, the chirp signal centered at 9 GHz with a bandwidth of 1.6 GHz is sampled and down-converted with a signal-to-noise ratio of 7.20 d B and an improved noise figure. Adopting the photonic ADC in the radar receiver and the above signal as the transmitted radar signal, an X-band inverse synthetic aperture radar system is set up, and the range and cross-range resolutions of 9.4 and 8.3 cm are obtained, respectively. 展开更多
关键词 ADC Broadband photonic ADC for microwave photonics-based radar receiver LFM MZM
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