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Operation Mode for Topside Ionospheric Sounding Based on Space-borne High Frequency Synthetic Aperture Radar

机译:基于星载高频合成孔径雷达的顶面电离层探测工作模式

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Topside ionospheric sounding is significant for scientific research, especially on forecasting of some astronomical disasters. Current ionospheric topside sounding radars have low range resolution of tens of kilometers, but nearly have no azimuth resolution. The concept of synthetic aperture radar (SAR) is introduced to topside ionospheric sounding for improving the azimuth resolution. The operation mode based on space-borne high frequency SAR (HF-SAR) is presented in this paper. Theoretical analysis indicates that the azimuth resolution can be improved to tens of meters. The satellite orbit parameters are selected, and the main parameters of the radar system are preliminarily designed. The technique of Displaced Phase Centers Antenna (DPCA) is utilized to solve the confliction between the radar detection range and the pulse repetition frequency.
机译:电离层顶空探测对科学研究特别是对某些天文灾害的预报具有重要意义。当前的电离层顶部探测雷达具有几十公里的低距离分辨率,但几乎没有方位分辨率。合成孔径雷达(SAR)的概念被引入到顶部电离层探测中,以提高方位分辨率。提出了基于星载高频SAR(HF-SAR)的工作模式。理论分析表明,方位角分辨率可以提高到几十米。选择了卫星轨道参数,并初步设计了雷达系统的主要参数。位移相中心天线(DPCA)技术被用来解决雷达探测距离与脉冲重复频率之间的冲突。

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