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Utilisation des signaux GNSS et de leurs augmentations pour l'Aviation Civile lors d'approches avec guidage vertical et d'approches de précision

机译:垂直导航和精确进近过程中GNSS信号在民航中的使用及其增加

摘要

Since many years, civil aviation has identified GNSS as an attractive mean to provide navigation services for every phase of flight due to its wide coverage area. However, to do so, GNSS has to meet relevant requirements in terms of accuracy, integrity, availability and continuity. To achieve this performance, augmentation systems have been developed to correct the GNSS signals and to monitor the quality of the received Signal-In-Space (SIS). We can distinguish GBAS (Ground Based Augmentation Systems), ABAS (Airborne Based Augmentation Systems) SBAS (Satellite Based Augmentation Systems). In this context, the aim of this study is to characterize and evaluate the GNSS position error of various positioning solutions which may fulfil applicable civil aviation requirements for GNSS approaches. In particular, this study focuses on two particular solutions which are: • Combined GPS/GALILEO receivers augmented by RAIM where RAIM is a type of ABAS augmentation. This solution is a candidate to provide a mean to conduct approaches with vertical guidance (APV I, APV II and LPV 200). • GPS L1 C/A receivers augmented by GBAS. This solution should allow to conduct precision approaches down to CAT II/III, thus providing an alternative to classical radio navigation solutions such as ILS. This study deals with the characterization of the statistics of the position error at the output of these GNSS receivers. It is organised as following. First a review of civil aviation requirements is presented. Then, the different GNSS signals structure and the associated signal processing selected are described. We only considered GPS and GALILEO constellations and concentrated on signals suitable for civil aviation receivers. The next section details the GNSS measurement models used to model the measurements made by civil aviation receivers using the previous GNSS signals. The following chapter presents the GPS/GALILEO and RAIM combination model developed as well as our conclusions on the statistics of the resulting position error. The last part depicts the GBAS NSE (Navigation System Error) model proposed in this report as well as the rationales for this model.
机译:多年来,民航业已将GNSS视为具有吸引力的手段,因为它的覆盖范围广,可为每个飞行阶段提供导航服务。但是,为此,GNSS必须在准确性,完整性,可用性和连续性方面满足相关要求。为了实现这一性能,已经开发了增强系统来校正GNSS信号并监视接收的空间信号(SIS)的质量。我们可以区分GBAS(基于地面的增强系统),ABAS(基于机载的增强系统),SBAS(基于卫星的增强系统)。在这种情况下,本研究的目的是表征和评估各种定位解决方案的GNSS定位误差,这些定位解决方案可能满足GNSS方法适用的民航要求。特别是,本研究着重于两个特定的解决方案:•RAIM增强的组合GPS / GALILEO接收机,其中RAIM是ABAS增强的一种。该解决方案是提供一种在垂直指导下进行方法(APV I,APV II和LPV 200)的方法的候选人。 •GBAS增强的GPS L1 C / A接收器。该解决方案应允许进行精确度低至CAT II / III的方法,从而为ILS等经典无线电导航解决方案提供替代方案。这项研究涉及这些GNSS接收器的输出处的位置误差统计量的表征。它的组织如下。首先,介绍了民航需求。然后,描述了不同的GNSS信号结构和选择的相关信号处理。我们仅考虑了GPS和GALILEO星座,并专注于适用于民航接收器的信号。下一部分将详细介绍GNSS测量模型,该模型用于对民航接收机使用以前的GNSS信号进行的测量建模。下一章介绍了开发的GPS / GALILEO和RAIM组合模型,以及我们对由此产生的位置误差进行统计的结论。最后一部分描述了本报告中提出的GBAS NSE(导航系统错误)模型以及该模型的原理。

著录项

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    Neri Pierre;

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  • 年度 2011
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  • 原文格式 PDF
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