用于检测GNSS信号失真的统计检验

M. Gamba, B. Motella, M. Pini
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引用次数: 23

摘要

全球导航卫星系统(GNSS)信号的极低功率使它们容易受到外部来源的干扰和干扰。这些会引起相关函数的失真,反映出伪距离测量的退化和定位精度差。另一方面,GNSS接收机在关键应用中的广泛使用要求在定位精度和完整性方面提高性能。本文提出了一种基于后相关测量数据统计检验的新算法,用于检测信号失真,防止接收机定位性能下降。统计测试在GNSS中的应用尚未深入研究,但最近的一些工作已经显示出将拟合优度(GoF)测试应用于原始信号样本以检测干扰的良好性能。本文提出了一种基于统计检验(符号检验)的GNSS接收机后相关阶段质量监测算法。对于两种不同的恶劣环境,即干扰源存在和欺骗攻击下,在检测相关形状畸变方面获得了有希望的结果。该方法的主要优点是复杂度低,与干扰类型无关,可适用于任何GNSS调制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Statistical test applied to detect distortions of GNSS signals
The extremely low power of Global Navigation Satellite System (GNSS) signals makes them vulnerable to disturbances and interference from external sources. These induce distortions on the correlation function that reflect upon a degraded pseudoranges measurement and poor positioning accuracy. On the other hand, the wide spread use of GNSS receivers in critical applications demands for improved performance in terms of positioning accuracy and integrity. This paper proposes a new algorithm based on the statistical testing of post-correlation measurements to detect signal distortions and to prevent degradations in the receiver positioning performance. The application of statistical tests to GNSS is not yet deeply investigated, but some recent works already show good performance when Goodness of Fit (GoF) tests are applied to raw signal samples to detect interference. The paper presents a quality monitoring algorithm, based on the application of a statistical testing, known as sign test, applied to the post correlation stage of a GNSS receiver. Promising results are obtained to detect distortions in the correlation shape, for two different harsh environments, i.e., with the presence of interference sources and under a spoofing attack. The main advantages of the proposed method are the low complexity, the indipendence from the type of disturbance and the possibility of its application to any GNSS modulation.
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