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Autonomous Fault Detection with Carrier-Phase DGPS for Shipboard Landing Navigation

机译:载波DGPS自主故障检测技术在舰船着陆导航中的应用

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This research focuses on airborne integrity algorithms for shipboard relative GPS (SRGPS) navigation. Airborne autonomous detection is required for navigation threats that are undetectable by integrity monitors at a shipboard differential reference station. These threats can be separated into two basic categories: (1) aircraft receiver failures, and (2) signal-in-space anomalies whose effects depend on the displacement between the user and the ship. For the anticipated carrier-phase SRGPS navigation architecture, tracking-loop cycle slips are well-known threats in the first category. Ionospheric gradient and satellite orbit ephemeris anomalies are relevant threats of the second type. Airborne autonomous monitoring algorithms to detect these threats are described in this paper. Monitor performance is directly evaluated relative to the integrity requirements for aircraft shipboard landing navigation applications.
机译:这项研究的重点是舰载相对GPS(SRGPS)导航的机载完整性算法。对于船上差分参考站的完整性监控器无法检测到的导航威胁,需要机载自主检测。这些威胁可以分为两个基本类别:(1)飞机接收器故障,以及(2)空间信号异常,其影响取决于用户和船舶之间的位移。对于预期的载波相位SRGPS导航体系结构,跟踪环路周跳是第一类中众所周知的威胁。电离层梯度和卫星轨道星历表异常是第二种类型的相关威胁。本文介绍了用于检测这些威胁的机载自主监视算法。相对于飞机舰载着陆导航应用程序的完整性要求,直接评估监视器的性能。

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