基于铱星Next LEO卫星多普勒/INS组合导航系统的备选PNT

H. Benzerrouk, Quang H. Nguyen, Fang Xiaoxing, A. Amrhar, A. Nebylov, R. Landry
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引用次数: 26

摘要

本文解决了基于近地轨道铱星的组合导航系统的一个原始问题。在没有雷达覆盖的地区,如海洋地区、北极、南极或沙漠地区,重要的是任何飞机都能在没有GNSS的环境中导航。在这种情况下,如何保持航空公司的跟踪信息,特别是在遇险和紧急情况下?为此,提出了一种新的惯性/多普勒集成设计方案。基于多普勒信息融合的低地球轨道卫星下行信号估计飞行器的位置和速度。本文认为,铱星下一LEO星座是一项新兴技术,具有搜索救援和飞行安全应用的优势。基于USRP E310收集的实验数据进行的仿真显示了良好的性能。新的导航系统是GNSS定位、导航和授时解决方案(PNT)的一个很好的替代方案。为了获得高性能,考虑并实现了基于多变量正交卡尔曼滤波器的无导数分布非线性滤波算法。集中在铱星网关的分布式设计取得了非常好的结果,被认为是用于跟踪航空公司和管理空域的雷达信息的扩展解决方案,通过将其集成到所有国家的空中交通管理系统(ATMS)中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alternative PNT based on Iridium Next LEO Satellites Doppler/INS Integrated Navigation System
This paper addresses an original problem of integrated navigation system based on iridium Next low Earth orbit Iridium Next satellites. In uncovered Radar areas such as oceanic regions, in the northern, southern poles, or in the desert regions, it is important that any aircraft can navigate even in denied GNSS environment. In such conditions, how to maintain tracking information of airlines especially during distress and emergency situations? to achieve that, a new design Inertial/Doppler integration design is developed and proposed. Position and speed of the aircraft are estimated based on multiple Doppler information fusion from Low Earth Orbit (LEO) satellites downlink signals. In this paper, Iridium Next LEO constellation is considered as an emerging technology, and privileged for search and rescue and flight safety applications. Simulations based on experimental data collected by USRP E310 demonstrated very good performances. The new navigation system represents a good alternative to GNSS Positioning, Navigation and Timing Solution (PNT). To achieve high performances, derivative free distributed nonlinear filtering algorithms based on multi variant Quadrature Kalman filters are considered and implemented. A distributed design centralized at the Iridium gateway carried out very good results to be considered as an extended solution to Radar information used to track airlines and manage airspace by its integration into the Air Traffic Management System (ATMS) in all countries.
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