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A Data-Driven Approach to SAR Data-Focusing
Cataldo Guaragnella1, Tiziana D'Orazio2
1DEI-Department of Electrical and Information Engineering, Politecnico di Bari, 70126 Bari, Italy. cataldo.guaragnella@poliba.it.
A new Synthetic Aperture RADAR (SAR) processing method uses a strong point scatterer to extract essential sensor data. This approach bypasses the need for precise mission parameters, simplifying low-cost SAR system development.
Area of Science:
- Remote Sensing
- Signal Processing
- Radar Imaging
Background:
- Synthetic Aperture RADAR (SAR) is a powerful imaging technique requiring precise sensor data for focusing.
- Existing model-based SAR algorithms necessitate detailed mission parameters and ancillary data, complicating low-cost sensor development.
Purpose of the Study:
- To develop a SAR data-focusing algorithm that does not require prior knowledge of mission parameters or ancillary data.
- To demonstrate the extraction of essential sensor reference functions directly from raw SAR data using a strong point scatterer.
Main Methods:
- Exploiting the coherent illumination of SAR data.
- Utilizing Singular Value Decomposition (SVD) to analyze raw data matrix redundancy.
- Employing phase unwrapping and polynomial fitting to reconstruct range and azimuth reference functions.
Main Results:
- Successfully generated focused SAR images from both synthetic and real raw data without mission parameters.
- Demonstrated the ability to extract azimuth beam patterns and other sensor parameters as a byproduct.
- Achieved focused images and pulse responses comparable to traditional Range-Doppler (RD) processing.
Conclusions:
- The proposed SAR processing technique effectively focuses images and extracts sensor information without relying on ancillary data.
- This method offers a viable solution for developing simplified, low-cost SAR systems for diverse applications.
- The algorithm shows good adherence to standard processing techniques, validating its performance.
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