Multi-Parameter Adaptive Notch Filter (MPANF) for Enhanced Interference Mitigation

NAVIGATION-JOURNAL OF THE INSTITUTE OF NAVIGATION(2022)

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摘要
Interference signals degrade global navigation satellite system (GNSS) per- formance and must be mitigated. Chirp signals can be mitigated with an adaptive notch filter (ANF), but the dynamic behavior limits performance. An ANF determines the instantaneous frequency and removes interference with a notch filter. However, there are several limitations. In this article, we propose a multi-parameter adaptive notch filter (MPANF) approach that sig- nificantly enhances conventional ANFs. First, it uses an loop-bandwidth control algorithm (LBCA) to alter the loop bandwidth of an frequency-locked loop (FLL)-based adaptation algorithm to facilitate superior tracking agility-to-precision trade-off. Second, it dynamically adjusts the notch depth to switch on interference mitigation or pass the signal through. Third, it modifies the notch width to accommodate tracking stability and optimize interference signal suppression to GNSS signal removal. The presented MPANF exhibits superior performance against chirp signals, including faster response to jump discontinuities.
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关键词
adaptive notch filter, ANF, FLL, FMCW, frequency-locked loop, frequency-modulated continuous wave, interference, LBCA, loop-bandwidth control algorithm, mitigation, MPANF, multi-parameter adaptive notch filter
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