Adaptive notch filtering against complex interference scenarios

J. R. V. D. Merwe, F. Garzia, A. Rügamer, Iñigo Cortes Vidal, W. Felber
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引用次数: 6

Abstract

Interference events in the global navigation satellite system (GNSS) spectrum are becoming commonplace. Therefore, the likelihood of receiving multiple simultaneous interference signals is increasing. A common approach to such complex scenarios is to cascade multiple mitigation processors. This paper analyses the response of cascaded adaptive notch filtering (ANF) against two simultaneous frequency-modulated continuous-wave (FMCW) interferences. Results show that if the amplitude differences between the FMCW interferences are sufficient, then a cascaded approach can be successful. However, if the amplitudes are similar, then an ANF would lock onto the wrong frequency-typically a frequency between the two interferences-causing significant performance losses. This effect emphasizes the need for more advanced interference mitigation methods to overcome these limitations, such as the use of multi-spectral methods.
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针对复杂干扰情况的自适应陷波滤波
全球卫星导航系统(GNSS)频谱中的干扰事件越来越普遍。因此,同时接收多个干扰信号的可能性正在增加。处理此类复杂场景的常用方法是级联多个缓解处理器。分析了级联自适应陷波滤波(ANF)对两种同步调频连续波干扰的响应。结果表明,如果FMCW干扰之间的幅度差足够大,则级联方法可以成功。然而,如果幅度相似,那么ANF将锁定在错误的频率上,通常是两个干扰之间的频率,从而导致显著的性能损失。这种影响强调需要更先进的干扰缓解方法来克服这些限制,例如使用多光谱方法。
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