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Improved fault detection and tolerance method based on local test and adaptively robust filtering for INS/GNSS integration

机译:改进的基于局部测试和自适应鲁棒滤波的INS / GNSS集成故障检测与容忍方法

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The abrupt fault contained in GNSS measurement will reduce the accuracy of SINS/GNSS loosely-coupled integrated navigation. To solve this problem, the performance of residual chi-square test method is analyzed, on this basis, an improved fault detection and tolerance method based on robust adaptive adjustment is proposed. The local test is implemented to detect and identify the faulty observation. Aiming at the problem that the small size of fault is hard to detect, the gain matrix is adjusted adaptively by using the robust adaptive factor to improve the fault tolerance ability for the missed detection. This in turn improves the detection performance of local test method for the small size of fault. The simulation results show that compared with conventional methods, this method has better performance for the abrupt fault especially small size of fault, and can improve the accuracy and reliability of integrated system effectively.
机译:GNSS测量中包含的突发故障将降低SINS / GNSS松散耦合的集成导航的精度。为了解决这个问题,提出了基于鲁棒自适应调整的改进的故障检测和公差方法来分析残留的Chi-Square测试方法的性能。实施本地测试以检测和识别故障观察。旨在解决小尺寸的故障难以检测的问题,通过使用稳健的自适应因子自适应地调整增益矩阵,以提高错过检测的容错能力。这反过来改善了局部测试方法的检测性能,用于小尺寸的故障。仿真结果表明,与传统方法相比,该方法具有更好的性能对突然的故障尤其小的故障,可以有效提高集成系统的准确性和可靠性。

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