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The Advancements in Research of FY-3 GNOS II and Instrument Performance

机译:FY-3 GNOS II和仪器性能的研究进展

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Global Navigation Satellite System (GNSS) Radio Occultation measurements can remote sensing Earth's neutral atmosphere and ionosphere. Meanwhile, another GNSS remote sensing technique named GNSS Reflectometry (GNSS-R) has been developed rapidly, which can retrieve sea surface wind speed. The GNSS Occultation Sounder (GNOS) II instrument has been designed to integrate these two GNSS remote sensing techniques in one payload of the third batch FengYun-3 (FY-3) satellites. This paper presents the advancements in research of GNOS II and instrument performance. The qualified module of GNOS II has been manufactured by National Space Science Center (NSSC), Chinese Academy of Sciences. We show that the phase center variety is low enough for the new designed precise orbit determination (POD) antenna to increase the accuracy of precise orbit determination. A wide coverage atmosphere occultation antenna and a 65nm technics ASIC are used in the new generation GNOS instrument. As an important improvement, the GNOS II can generate Delay Doppler Maps (DDMs) of GNSS signals scattered from the ocean surface. The result of test shows that the GNOS II instrument has high performance in precision of code, carrier phase and real-time navigation.
机译:全球导航卫星系统(GNSS)无线电掩星测量可以遥感地球的中性气氛和电离层。同时,迅速开发了名为GNSS反射测量(GNSS-R)的GNSS遥感技术,可以检索海面风速。 GNSS掩星声音仪(GNOS)II仪器旨在将这两个GNSS遥感技术集成在第三批式凤云-3(FY-3)卫星的一个有效载荷中。本文提出了GNOS II和仪器性能研究的进步。 GNOS II的合格模块由中国科学院国家空间科学中心(NSSC)制造。我们表明,相位中心品种足够低,新设计的精确轨道确定(POD)天线以提高精确轨道测定的准确性。在新一代GNOS仪器中使用了宽覆盖环境掩星掩星天线和65nm技术ASIC。作为一个重要的改进,GNOS II可以产生从海洋表面散射的GNSS信号的延迟多普勒地图(DDMS)。测试结果表明,GNOS II仪器在代码,载波相位和实时导航的精度具有高性能。

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