IEEE Aerospace and Electronic Systems Magazine · 2015 · 19 citations · 18 references
Radar Target SignatureEngineeringJet EngineJet Engine CompressorAutomatic AlgorithmSystems EngineeringImaging RadarRadar Signal ProcessingAutomatic Target RecognitionSynthetic Aperture RadarJet Engine ModulationRadar ApplicationMicro-doppler FeaturesSignal ProcessingRadar ImagingRadarAerospace EngineeringRadar Image ProcessingBomb Damage Assessment
Radar is a powerful tool for detecting and tracking airborne targets by day and night. Nowadays, noncooperative target recognition (NCTR) is considered an important subject. NCTR means technologies provide high-resolution target signatures and use them to make some decisions about the type of target that has been detected. Clearly, this function is performed with no cooperation from the target concerned, and it may even not be aware that its signature is being measured for recognition purposes [1]. Jet engine modulation (JEM) [2]-[4] generated by the engine rotation in an aircraft has been used for radar-based NCTR purposes, along with high-resolution range profile and inverse synthetic aperture radar (ISAR) [5]-[7]. Recognition by JEM uses micro-Doppler features induced by a rotating jet engine compressor. The micro-Doppler is characterized by a time-dependent Doppler shift that is different from that caused by the target bulk motion.
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Micro-doppler effect in radar: phenomenon, model, and simulation study
V.C. Chen, Fayin Li, Shen-Shyang Ho et al. · IEEE Transactions on Aerospace and Electronic Systems · 2006 · 1.6K citations
Radar, Radar Target, Engineering +10
Bivariate Empirical Mode Decomposition
Gabriel Rilling, Patrick Flandrin, Paulo Gonçalves et al. · IEEE Signal Processing Letters · 2007 · 589 citations · Full text