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Quality control for integrated GNSS and inertial navigation systems

机译:GNSS和惯性导航系统集成的质量控制

摘要

The availability of GPS signals is a major limitation for many existing and potential applications. Fortunately, with the development of Galileo by the European Commission (EC) and European Space Agency (ESA) and new funding for the restoration of the Russian GLONASS announced by the Russian Federation the future for satellite based positioning and navigation applications is extremely promising. This research primarily investigates the benefits of GNSS interoperability and GNSS/INS integration to Receiver Autonomous Integrity Monitoring (RAIM) from a geometrical perspective. In addition to these investigations, issues regarding multiple outlier detection and identification are examined and integrity procedures addressing these issues are proposed. Moreover, it has been shown how the same RAIM algorithms can be effectively applied to the various static and kinematic navigation architectures used in this research.
机译:GPS信号的可用性是许多现有和潜在应用程序的主要限制。幸运的是,随着欧洲委员会(EC)和欧洲航天局(ESA)伽利略的发展以及俄罗斯联邦宣布的恢复俄罗斯GLONASS的新资金,基于卫星的定位和导航应用的未来非常有希望。这项研究主要从几何角度研究了GNSS互操作性和GNSS / INS集成对接收者自治完整性监控(RAIM)的好处。除了这些调查之外,还研究了有关多个异常值检测和识别的问题,并提出了解决这些问题的完整性程序。而且,已经表明了如何将相同的RAIM算法有效地应用于本研究中使用的各种静态和运动学导航架构。

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