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Failure detection approach applying to GPS autonomous integrity monitoring

机译:故障检测方法在GPS自主完整性监控中的应用

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摘要

There has been a growing interest within the potential user community in applying GPS to a variety of high-precision navigation problems such as aircraft nonprecision approach, river and harbour navigation, real-time or kinematic surveying, etc. In view of more and more GPS applications, the reliability of GPS is at issue. This promotes the need for several proposed receiver autonomous integrity monitoring (RAIM), GPS integrity channel (GIG), and wide area augmentation system (WAAS) schemes. The authors propose an approach for autonomous GPS satellite failure detection. The method exploits total least squares (TLS) optimisation to achieve fault detection. The traditional least squares approach fails to address the change in the data matrix associated with GPS satellite constellation. This drawback is shown to be remedied by the total least squares method. The proposed method can further be extended to account for failure isolation in which failed GPS satellites are identified and hence excluded in positioning.
机译:在潜在的用户群体中,人们越来越有兴趣将GPS应用于各种高精度导航问题,例如飞机非精确进场,河流和港口导航,实时或运动学测量等。鉴于越来越多的GPS在应用中,GPS的可靠性存在争议。这促进了对几种建议的接收机自主完整性监控(RAIM),GPS完整性信道(GIG)和广域增强系统(WAAS)方案的需求。作者提出了一种用于自主GPS卫星故障检测的方法。该方法利用总最小二乘(TLS)优化来实现故障检测。传统的最小二乘法无法解决与GPS卫星星座相关的数据矩阵的变化。该缺陷已显示出可以通过总最小二乘法来弥补。所提出的方法可以进一步扩展以解决故障隔离问题,其中识别出故障的GPS卫星,从而将其排除在定位之外。

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