Abstract:
The accuracy of sea scattering simulations depends on both the robustness of the chosen electromagnetic model and the adequate description of the ocean surface itself. Th...Show MoreMetadata
Abstract:
The accuracy of sea scattering simulations depends on both the robustness of the chosen electromagnetic model and the adequate description of the ocean surface itself. The latter consideration is particularly relevant for Doppler simulations that are sensitive to hydrodynamic (non-linear) effects in surface propagation. There are two commonly used approaches to introduce such non-linearities – the Creamer transform and the Choppy wave model. We compare these two models and their impact on the Doppler characteristics of the computed backscattered signals using Monte Carlo simulations in the 2-D space. The electromagnetic part of the problem is solved exactly using a boundary integral equation technique. Significant differences in Doppler centroids corresponding to the two models are observed for intermediate to large incidence angles, with the Creamer transform producing larger shifts. The widths of the spectra are more consistent, with the Creamer model leading to somewhat larger values. Possible reasons for the discrepancies are discussed.
Date of Conference: 16-21 July 2023
Date Added to IEEE Xplore: 20 October 2023
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- IEEE Keywords
- Index Terms
- Surface Model ,
- Choppy Wave ,
- Doppler Properties ,
- Monte Carlo Simulation ,
- Incident Angle ,
- Nonlinear Effects ,
- Large Angle ,
- Ocean Surface ,
- Backscattered Signals ,
- Description Of Surface ,
- Grazing ,
- Fast Fourier Transform ,
- Advection ,
- Spectral Width ,
- Surface Components ,
- Doppler Shift ,
- Modulation Transfer Function ,
- Orbital Motion ,
- Doppler Spectrum ,
- Computational Electromagnetics ,
- Intermediate Angles ,
- Electromagnetic Solver ,
- Modulation Strength
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Surface Model ,
- Choppy Wave ,
- Doppler Properties ,
- Monte Carlo Simulation ,
- Incident Angle ,
- Nonlinear Effects ,
- Large Angle ,
- Ocean Surface ,
- Backscattered Signals ,
- Description Of Surface ,
- Grazing ,
- Fast Fourier Transform ,
- Advection ,
- Spectral Width ,
- Surface Components ,
- Doppler Shift ,
- Modulation Transfer Function ,
- Orbital Motion ,
- Doppler Spectrum ,
- Computational Electromagnetics ,
- Intermediate Angles ,
- Electromagnetic Solver ,
- Modulation Strength
- Author Keywords