Tuning-Free ISAR Imaging Based on Single-Step Deep Reinforcement Learning with Swin Transformer
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING(2025)
Key words
Imaging,Transformers,Radar imaging,Training,Signal to noise ratio,Time-frequency analysis,Signal reconstruction,Image resolution,Deep reinforcement learning,Scattering,Deep unrolling networks,inverse synthetic aperture radar (ISAR),sparse signal reconstruction,sparse stepped frequency chirp signal,Swin Transformer
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