研究目的
To propose a novel real-time optronic high-resolution SAR processor with the capability of full-resolution imaging to address the burden of large-scale SAR data processing and enable real-time image formation.
研究成果
The proposed optronic SAR processor enables full-resolution imaging with good image quality, comparable to algorithms without subaperture partition, and offers high-speed processing and easy scalability for large-scale data, benefiting ultra-high resolution SAR applications.
研究不足
Restricted by the data scale of SLMs, which limits the amount of raw data that can be encoded at once, requiring subaperture partitioning with overlap to ensure smooth recombination.
1:Experimental Design and Method Selection:
The system uses subaperture architecture to process SAR data in parallel with multiple optical subaperture processing modules, each implemented with spatial light modulators (SLMs) and lenses for 2D Fourier transform, range compression, azimuth compression, and 2D inverse Fourier transform.
2:Sample Selection and Data Sources:
Airborne SAR real data is used, divided into subapertures with a 66% overlap rate.
3:List of Experimental Equipment and Materials:
SLMs (resolution 1920*1080 pixels), lenses, laser, beam splitter prisms, CCD.
4:Experimental Procedures and Operational Workflow:
SAR raw data is divided into subapertures, preprocessed with amplitude scaling and phase shift, encoded onto light beams by SLMs, optically processed in parallel, and combined into a full-resolution image.
5:Data Analysis Methods:
Analysis of PSLR (peak sidelobe rate) and frequency spectrum bandwidth to validate image quality.
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