Research on scheme and algorithm of high-precision fault-tolerant integrated navigation for HALE UAV

Hai-ming Chen, Zhi Xiong, Rong Wang, Jianye Liu
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引用次数: 3

Abstract

To meet the need of high-precision navigation for HALE(high-altitude long-endurance) UAV(unmanned aerial vehicle), multi-sensor fault-tolerant autonomous navigation system was researched. For the shortcoming that the GPS signal is easily interfered by electromagnetic techniques, combining sundry integrated navigation patterns such as the INS/CNS integrated navigation, the INS/SAR (Synthetic Aperture Radar) integrated navigation, and other autonomous navigation system, the fault-tolerant federated filter scheme is proposed in this paper. This scheme can effectively take advantage of multi-sensor information redundancy. When the GPS system failure occurred, the system can effectively detect and isolate the corresponding failure subsystem, and at this time the INS/CNS integrated navigation system plays a leading role in the navigation system to maintain a certain degree of navigation accuracy. By importing the SAR-aided navigation system in the terminal, the system can achieve high-precision navigation positioning. The integrated navigation system can detecte failure in rapid speed, so it has a high application value in practical engineering. The simulation results by covariance analysis show that the proposed navigation scheme is feasible, and this navigation scheme has important theoretical reference value to improve accuracy and reliability of integrated navigation system for the HALE UAV.
HALE无人机高精度容错组合导航方案与算法研究
为满足高空长航时无人机的高精度导航需求,研究了多传感器容错自主导航系统。针对GPS信号容易受到电磁干扰的缺点,结合各种组合导航模式,如INS/CNS组合导航、INS/SAR(合成孔径雷达)组合导航等自主导航系统,提出了容错联邦滤波方案。该方案能有效利用多传感器信息冗余。当GPS系统发生故障时,系统可以有效地检测并隔离相应的故障分系统,此时INS/CNS组合导航系统在导航系统中起主导作用,保持一定的导航精度。通过在终端导入sar辅助导航系统,系统可以实现高精度的导航定位。该组合导航系统可以快速检测故障,因此在实际工程中具有很高的应用价值。协方差分析仿真结果表明,所提出的导航方案是可行的,该导航方案对提高HALE无人机组合导航系统的精度和可靠性具有重要的理论参考价值。
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