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首页> 外文期刊>Journal of applied geodesy >Performance Analysis of Fault Detection and Identification for Multiple Faults in GNSS and GNSS/INS Integration
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Performance Analysis of Fault Detection and Identification for Multiple Faults in GNSS and GNSS/INS Integration

机译:GNSS和GNSS / INS集成中多个故障的故障检测和识别性能分析

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摘要

For positioning, navigation and timing (PNT) purposes, GNSS or GNSS/INS integration is utilised to provide real-time solutions. However, any potential sensor failures or faulty measurements due to malfunctions of sensor components or harsh operating environments may cause unsatisfactory estimation for PNT parameters. The inability for immediate detecting faulty measurements or sensor component failures will reduce the overall performance of the system. So, real time detection and identification of faulty measurements is required to make the system more accurate and reliable for different applications that need real time solutions such as real time mapping for safety or emergency purposes. Consequently, it is necessary to implement an online fault detection and isolation (FDI) algorithm which is a statistic-based approach to detect and identify multiple faults. However, further investigations on the performance of the FDI for multiple fault scenarios is still required. In this paper, the performance of the FDI method under multiple fault scenarios is evaluated, e.g., for two, three and four faults in the GNSS and GNSS/INS measurements under different conditions of visible satellites and satellites geometry. Besides, the reliability (e.g., MDB) and separability (correlation coefficients between faults detection statistics) measures are also investigated to measure the capability of the FDI method. A performance analysis of the FDI method is conducted under the geometric constraints, to show the importance of the FDI method in terms of fault detectability and separability for robust positioning and navigation for real time applications.
机译:为了进行定位,导航和授时(PNT),GNSS或GNSS / INS集成用于提供实时解决方案。但是,由于传感器组件故障或恶劣的操作环境而引起的任何潜在的传感器故障或测量错误都可能导致对PNT参数的估算不理想。无法立即检测错误的测量或传感器组件故障将降低系统的整体性能。因此,需要对错误测量进行实时检测和识别,以使系统对于需要实时解决方案(例如出于安全或紧急目的的实时映射)的不同应用而变得更加准确和可靠。因此,有必要实现在线故障检测与隔离(FDI)算法,该算法是一种基于统计的方法来检测和识别多个故障。但是,仍然需要对FDI在多种故障情况下的性能进行进一步研究。本文评估了FDI方法在多种故障情况下的性能,例如,在可见卫星和卫星几何形状不同的条件下,针对GNSS和GNSS / INS测量中的两个,三个和四个故障,评估了FDI方法的性能。此外,还研究了可靠性(例如,MDB)和可分离性(故障检测统计之间的相关系数)措施,以测量FDI方法的能力。在几何约束下对FDI方法进行了性能分析,以显示FDI方法在故障检测能力和可分离性方面对于实时应用的鲁棒定位和导航的重要性。

著录项

  • 来源
    《Journal of applied geodesy》 |2015年第1期|35-48|共14页
  • 作者单位

    School of Civil and Environmental Engineering University of New South Wales, Sydney, NSW 2052, Australia, Faculty of Engineering Taif University, Ministry of Higher Education, Taif, Saudi Arabia;

    School of Civil and Environmental Engineering University of New South Wales, Sydney, NSW 2052, Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    GNSS; Fault detection and identification; Reliability Separability;

    机译:GNSS;故障检测与识别;可靠性和可分离性;

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