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Mitigation of Frequency-Hopped Tick Jamming Signals

机译:跳频刻度线干扰信号的缓解

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Global Navigation Satellite System (GNSS) jamming is an evolving technology where new modulations are progressively introduced in order to reduce the impact of interference mitigation techniques such as Adaptive Notch Filters (ANFs). The Standardisation of GNSS Threat reporting and Receiver testing through International Knowledge Exchange, Experimentation and Exploitation (STRIKE3) project recently described a new class of jamming signals, called tick signals, where a basic frequency tick is hopped over a large frequency range. In this way, discontinuities are introduced in the instantaneous frequency of the jamming signals. These discontinuities reduce the effectiveness of ANFs, which unable to track the jamming signal. This paper analyses the effectiveness of interference mitigation techniques with respect to frequency-hopped tick jamming signals. ANFs and Robust Interference Mitigation (RIM) techniques are analysed. From the analysis, it emerges that, despite the presence of frequency discontinuities, ANFs provide some margin against tick signals. However, frequency discontinuities prevent ANFs to remove all the jamming components and receiver operations are denied for moderate Jamming to Noise power ratio $(J/N)$ values, RIM techniques are not affected by the presence of frequency discontinuities and significantly higher jamming power are sustained by the receiver when this type of techniques is adopted.
机译:全球导航卫星系统(GNSS)干扰是一项不断发展的技术,为了降低干扰缓解技术(如自适应陷波滤波器(ANF))的影响,逐渐引入了新的调制方式。通过国际知识交换,实验和利用(STRIKE3)项目进行的GNSS威胁报告和接收器测试的标准化最近描述了一种新的干扰信号,称为滴答信号,其中基本频率滴答信号在较大的频率范围内跳变。这样,在干扰信号的瞬时频率中引入了不连续性。这些不连续性降低了无法跟踪干扰信号的ANF的有效性。本文分析了针对跳频滴答声干扰信号的干扰缓解技术的有效性。分析了ANFs和鲁棒干扰缓解(RIM)技术。从分析中可以看出,尽管存在频率不连续性,但ANF仍可抵抗滴答信号。但是,频率不连续性会阻止ANF去除所有干扰成分,并且由于中等干扰噪声功率比,接收机工作被拒绝了。 $(J / N)$ 如果采用这种技术,则RIM技术不受频率不连续性的影响,并且接收机可以承受更高的干扰功率。

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