Impact of Meaconers on Aircraft GNSS Receivers During Approaches

Mathieu Hussong, Emile Ghizzo, Carl Milner, Axel Garcia-Pena, Julien Lesouple, Christophe Macabiau
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Abstract

. ABSTRACT This paper develops a classification to quantify the impact of a meaconer on an aircraft GNSS receiver, from the tracking loops up to the position estimation, during an SBAS-guided LPV-200 approach. Depending on the scenario, the impact of the meaconer on the estimated position can be catalogued for each GNSS signal at a given epoch into one of the four following situations - nominal, jamming, multipath or spoofing. In the nominal situation, the meaconer has no appreciable impact on the aircraft position. In the jamming situation, the meaconer induces higher noise levels resulting in greater errors in the position estimation than in the nominal situation. In the multipath situation, the meaconer effect on the position is similar to a GNSS multipath error. In the spoofing situation, the meaconer adds a deterministic bias on a subset of PRNs that can lead to significantly erroneous position estimations. Extensive simulations demonstrate that a meaconer with a high power and close to the aircraft trajectory can degrade the GNSS receiver performance and provoke faulty estimations of the aircraft position, which are not compliant with the civil aviation standards.
在进近过程中,Meaconers对飞机GNSS接收机的影响
本文开发了一种分类方法,用于量化在sbas制导的LPV-200进近过程中,从跟踪回路到位置估计,meaconer对飞机GNSS接收器的影响。根据不同的情况,在给定的时间点,每个GNSS信号对估计位置的影响可以分为以下四种情况之一:标称、干扰、多径或欺骗。在标称情况下,舵机对飞机位置没有明显的影响。在干扰情况下,meaconer会产生更高的噪声水平,导致位置估计的误差比标称情况下更大。在多径情况下,meaconer对位置的影响类似于GNSS多径误差。在欺骗情况下,处理器在prn的子集上添加确定性偏差,这可能导致严重错误的位置估计。大量的仿真结果表明,高功率且接近飞机轨迹的干扰会降低GNSS接收机的性能,并导致对飞机位置的错误估计,从而不符合民用航空标准。
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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