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Navigator GPS Receiver for Fast Acquisition and Weak Signal Space Applications

机译:导航器GPS接收器,用于快速采集和微弱信号空间应用

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摘要

NASA Goddard Space Flight Center (GSFC) is developing a new space-borne GPS receiver that can operate effectively in the full range of Earth orbiting missions from Low Earth Orbit (LEO) to geostationary and beyond . Navigator is designed to be a fully space flight qualified GPS receiver optimized for fast signal acquisition and weak signal tracking. The fast acquisition capabilities provide exceptional time to first fix performance (TTFF) with no a priori receiver state or GPS almanac information, even in the presence of high Doppler shifts present in LEO (or near perigee in highly eccentric orbits). The fast acquisition capability also makes it feasible to implement extended correlation intervals and therefore significantly reduce Navigator’s acquisition threshold. This greatly improves GPS observability when the receiver is above the GPS constellation (and satellites must be tracked from the opposite side of the Earth) by providing at least 10 dB of increased acquisition sensitivity. Fast acquisition and weak signal tracking algorithms have been implemented and validated on a hardware development board. A fully functional version of the receiver, employing most of the flight parts, with integrated navigation software is expected by mid 2005. An ultimate goal of this project is to license the Navigator design to an industry partner who will then market the receiver as a commercial product.
机译:美国宇航局戈达德太空飞行中心(GSFC)正在开发一种新型的星载GPS接收器,该接收器可以有效地执行从低地球轨道(LEO)到地球静止轨道及以后的所有地球轨道飞行任务。 Navigator被设计为完全符合太空飞行要求的GPS接收器,针对快速信号采集和微弱信号跟踪进行了优化。快速采集功能即使在LEO中存在高多普勒频移(或在高偏心轨道近近角)的情况下,也可以在没有先验接收器状态或GPS年历信息的情况下提供出色的首次定位性能(TTFF)时间。快速采集功能还使实现扩展的相关间隔变得可行,因此大大降低了Navigator的采集阈值。当接收器位于GPS星座上方时(必须从地球的另一侧跟踪卫星),通过提供至少10 dB的增加的采集灵敏度,可以大大提高GPS的可观测性。快速采集和弱信号跟踪算法已在硬件开发板上实现并得到验证。预计到2005年年中,将采用大多数飞行部件的功能齐全的接收器,并带有集成的导航软件。该项目的最终目标是将Navigator设计许可给行业合作伙伴,然后该合作伙伴将接收器作为商用产品进行销售。产品。

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