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Adaptive Fault Isolation and System Reconfiguration Method for GNSS/INS Integration

机译:用于GNSS / INS集成的自适应故障隔离和系统重新配置方法

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摘要

Appropriate fault isolation and system reconfiguration scheme is of great significance to ensure the reliability and precision of the tightly coupled global navigation satellite system/inertial navigation system (GNSS/INS). Currently, the commonly used methods include fault isolation method and fault adaptation method. However, the performance of them is not compared and analyzed fully in the existing literatures. In this paper, the principle of them is analyzed and the performance of them under different conditions is compared in theory firstly. On this basis, to improve the effectiveness and adaptability of fault detection and isolation, an adaptive fault isolation and system reconfiguration method is proposed. The radial basis function neural network (RBFNN) is used to predict the pseudo-GNSS measurement for the measurement reconfiguration. Besides, taking the variety of observation conditions into consideration, an adaptive adjustment criterion is introduced to realize the switch of fault isolation and measurement reconfiguration. The performance of the proposed method is verified and compared with the traditional methods by using the field test data. The results show that the fault isolation method can obtain higher filtering precision than the fault adaptation method in theory, compared with these two methods, the proposed method has better adaptability to the complex environment, and can improve the reliability and precision of the navigation system effectively.
机译:适当的故障隔离和系统重新配置方案具有重要意义,以确保紧密耦合的全球导航卫星系统/惯性导航系统(GNSS / INS)的可靠性和精度。目前,常用的方法包括故障隔离方法和故障适配方法。然而,它们的性能未经比较和在现有文献中完全分析。在本文中,分析了它们的原理,在首先比较了不同条件下它们的性能。在此基础上,提高故障检测和隔离的有效性和适应性,提出了一种自适应故障隔离和系统重新配置方法。径向基函数神经网络(RBFNN)用于预测测量重新配置的伪GNSS测量。此外,考虑到各种观察条件,引入了自适应调整标准,以实现故障隔离和测量重新配置的开关。通过使用现场测试数据验证所提出的方法的性能并与传统方法进行比较。结果表明,故障隔离方法可以获得比理论上的故障适应方法更高的过滤精度,与这两种方法相比,该方法对复杂环境具有更好的适应性,可以有效提高导航系统的可靠性和精度。有效提高导航系统的可靠性和精度。

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