Preliminary experimental results by the prototype of Sanya Incoherent Scatter Radar

IF 2.9 3区 地球科学 Earth and Planetary Physics Pub Date : 2020-11-16 DOI:10.26464/epp2020063
XinAn Yue, WeiXing Wan, Han Xiao, LingQi Zeng, ChangHai Ke, BaiQi Ning, Feng Ding, BiQiang Zhao, Lin Jin, Chen Li, MingYuan Li, JunYi Wang, HongLian Hao, Ning Zhang
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引用次数: 8

Abstract

In the past decades, the Incoherent Scatter Radar (ISR) has been demonstrated to be one of the most powerful instruments for ionosphere monitoring. The Institute of Geology and Geophysics at the Chinese Academy of Sciences was founded to build a state-of-the-art phased-array ISR at Sanya (18.3°N, 109.6°E), a low-latitude station on Hainan Island, named the Sanya ISR (SYISR). As a first step, a prototype radar system consisting of eight subarrays (SYISR-8) was built to reduce the technical risk of producing the entire large array. In this work, we have summarized the preliminary experimental results based on the SYISR-8. The amplitude and phase among 256 channels were first calibrated through an embedded internal monitoring network. The mean oscillation of the amplitude and phase after calibration were about 1 dB and 5°, respectively, which met the basic requirements. The beam directivity was confirmed by crossing screen of the International Space Station. The SYISR-8 was further used to detect the tropospheric wind profile and meteors. The derived winds were evaluated by comparison with independent radiosonde and balloon-based GPS measurements. The SYISR-8 was able to observe several typical meteor echoes, such as the meteor head echo, range-spread trail echo, and specular trail echo. These results confirmed the validity and reliability of the SYISR-8 system, thereby reducing the technical risk of producing the entire large array of the SYISR to some extent.

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三亚非相干散射雷达样机的初步实验结果
在过去的几十年中,非相干散射雷达(ISR)已被证明是电离层监测中最强大的仪器之一。中国科学院地质与地球物理研究所成立的目的是在海南岛的低纬度站点三亚(北纬18.3°,东经109.6°)建立一个最先进的相控阵ISR,命名为三亚ISR (SYISR)。作为第一步,一个原型雷达系统由8个子阵列(SYISR-8)组成,以减少生产整个大型阵列的技术风险。在这项工作中,我们总结了基于SYISR-8的初步实验结果。首先通过嵌入式内部监测网络对256个通道的幅度和相位进行校准。校正后振幅和相位的平均振荡分别约为1 dB和5°,基本满足要求。通过国际空间站的交叉屏确认了光束的方向性。SYISR-8进一步用于对流层风廓线和流星的探测。通过与独立的无线电探空仪和基于气球的GPS测量结果进行比较,评估了导出的风。SYISR-8能够观测到几种典型的流星回波,如流星头回波、距离扩展尾迹回波和镜面尾迹回波。这些结果证实了SYISR-8系统的有效性和可靠性,从而在一定程度上降低了生产整个SYISR大阵的技术风险。
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来源期刊
Earth and Planetary Physics
Earth and Planetary Physics GEOSCIENCES, MULTIDISCIPLINARY-
自引率
17.20%
发文量
174
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