Gnss signal authenticity verification using carrier phase measurements with multiple receivers

A. J. Jahromi, A. Broumandan, Geard Lachapelle
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引用次数: 14

Abstract

Structural interference signals can severely jeopardize the performance of GNSS receivers which may lead to serious consequences for scores of applications. This type of interference is designed to be very similar to the authentic GNSS signals; therefore, it is very difficult for a conventional receiver to discriminate them from genuine observations. This research focuses on the application of a carrier phase capable dual antenna receiver (or two spatially separated receivers) to allow authenticity verification and reliable measurements classification. Assuming that all counterfeit PRNs originate from the same source, the proposed method identifies fake measurements based on their time invariant carrier phase double differences. The proposed detection procedure is based on a combination of GLRT and graph theory formulated to classify counterfeit and authentic signals and to reduce the authenticity verification time. Simulations and real-data processing results verify that the proposed technique can successfully classify the authentic and counterfeit measurements within a few minutes. The real-world performance of this method has also been verified on carrier phase capable GNSS receivers. The theoretical analyses and processing results show that the performance of this technique improves as the observation interval or receiver antenna spacing increases.
Gnss信号真实性验证使用载波相位测量与多个接收机
结构干扰信号会严重危害GNSS接收机的性能,可能会对许多应用造成严重后果。这种类型的干扰被设计得与真实的GNSS信号非常相似;因此,传统的接收者很难将它们与真实的观测结果区分开来。本研究的重点是应用具有载波相位能力的双天线接收机(或两个空间分离的接收机)来进行真实性验证和可靠的测量分类。假设所有伪造prn来自同一来源,该方法基于它们的时不变载波相位双差来识别伪造测量。本文提出的检测方法是基于GLRT和图论相结合的方法来区分真伪信号,减少真伪验证时间。仿真和实际数据处理结果验证了该方法能够在几分钟内成功地对真假测量结果进行分类。该方法的实际性能也在具有载波相位能力的GNSS接收机上得到了验证。理论分析和处理结果表明,该技术的性能随着观测间隔或接收天线间距的增大而提高。
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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