Modeling and SAR Imaging of the Sea Surface: a Review of the State-of-the-Art with Simulations
Igor G. Rizaev, Oktay Karakus, S. John Hogan, Alin Achim

TL;DR
This paper presents a comprehensive simulation framework for SAR imaging of sea surface waves and ship wakes, analyzing how various parameters influence image formation and interpretation in oceanographic remote sensing.
Contribution
It introduces the first exhaustive simulation model covering all SAR effects on sea waves and ship wakes, integrating multiple theoretical models and analyzing diverse imaging parameters.
Findings
Simulation results align well with SAR imaging theory.
SAR parameters and hydrodynamic conditions significantly affect wave and wake imaging.
The framework enables better understanding of radar imaging mechanisms for ocean surface features.
Abstract
Among other remote sensing technologies, synthetic aperture radar (SAR) has become firmly established in the practice of oceanographic research. Despite solid experience in this field, comprehensive knowledge and interpretation of ocean/sea and vessel wave signatures on radar images are still very challenging. Many technical parameters and scanning conditions vary for different SAR platforms, which also imposes some restrictions on the cross-analysis of their respective images. Numerical simulation of SAR images allows the analysis of many radar imaging parameters including environmental, ship, or platform related. In this paper, we present a universal simulation framework for SAR imagery of the sea surface, which includes the superposition of sea-ship waves. This paper is the first attempt to cover exhaustively all SAR imaging effects for the sea waves and ship wakes scene. The study…
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Taxonomy
TopicsOcean Waves and Remote Sensing · Oceanographic and Atmospheric Processes · Ship Hydrodynamics and Maneuverability
