Correlation Analysis for Fault Detection Statistics in Integrated GNSS/INS Systems

Jinling Wang, A. Almagbile, Youlong Wu, T. Tsujii
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引用次数: 10

Abstract

Global Satellite Navigation Systems (GNSS) have been widely used for positioning, navigation and timing (PNT). Therefore, the integrity of the satellite based navigation systems has been a major concern for many liability critical applications, such as civil aviation, and location-based services (LBS). Over the past two decades, GNSS Receiver Autonomous Integrity Monitoring (RAIM) procedures have been developed, but the efficiency of such procedures is highly dependent on measurement redundancy and geometric strength within the GNSS positioning solutions. Reliability of a PNT system can be measured by, not only the wellknown Minimal Detectable Biases (MDBs), but also the recently derived Minimal Separable Biases (MSBs) for the measurements. While the previous research has shown that the MSBs are directly related to the correlations between the faulty measurement detection statistics, a comprehensive analysis for such correlations between fault (or outlier) detection statistics is still lacking, even for commonly used GNSS/INS integration scenarios. In this research, we have demonstrated that with the aid of inertial sensors, even with low-cost MEMS sensors, the MDBs and correlation coefficients between the measurement fault detection statistics can be significantly reduced, thus improving the separability of faults in GNSS measurements.
GNSS/INS集成系统故障检测统计的相关性分析
全球卫星导航系统(GNSS)在定位、导航和授时(PNT)方面有着广泛的应用。因此,卫星导航系统的完整性一直是许多责任关键应用的主要关注点,例如民用航空和基于位置的服务(LBS)。在过去的二十年中,GNSS接收机自主完整性监测(RAIM)程序已经开发出来,但这些程序的效率高度依赖于GNSS定位解决方案中的测量冗余和几何强度。PNT系统的可靠性不仅可以通过众所周知的最小可检测偏差(MDBs)来测量,还可以通过最近导出的最小可分离偏差(MSBs)来测量。虽然以往的研究表明msb与故障测量检测统计量之间的相关性直接相关,但即使对于常用的GNSS/INS集成场景,也缺乏对故障(或离群值)检测统计量之间相关性的全面分析。在本研究中,我们证明了在惯性传感器的帮助下,即使使用低成本的MEMS传感器,也可以显著降低测量故障检测统计量之间的mdb和相关系数,从而提高GNSS测量中故障的可分性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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