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May 6, 2026Journal of Mathematical Imaging and Vision0 citationsOpen Access

Artefact Analysis of Multistatic Three-Dimensional SAR Imaging with Two Linear Arrays

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DADaniel AndréVKVenkateswaran P. KrishnanCNClifford Nolan

Key Points

  • This research examines the impact of data acquisition geometry on artefacts in three-dimensional Synthetic Aperture Radar imaging.
  • Utilized microlocal analysis to investigate multistatic SAR geometries.
  • Employed two linear arrays for data acquisition.
  • Developed a time-gating condition to mitigate artefacts in images.
  • Conducted numerical simulations to validate findings.
  • Established a time-gating condition that effectively prevents artefacts in the region of interest.
  • Validated the conditions through numerical simulations, supporting the theoretical findings.

Abstract

Abstract In recent years, radar technology has seen much improvement, making multistatic Synthetic Aperture Radar (SAR) sensing a realistic possibility, for example in satellite constellations or unmanned aircraft systems. With such systems, there then comes the requirement to investigate useful multistatic SAR geometries. We provide a microlocal analysis of a multistatic data acquisition geometry for three-dimensional SAR imaging, where the transmitters and receivers effectively constitute two linear arrays, which survey a region of interest (ROI). Using microlocal techniques, we show how the data acquisition geometry influences whether artefacts are likely to be present in the resultant image and how they can be avoided. Our main contribution is to provide a time-gating condition on the data which ensures that artefacts are not present in the ROI. As an independent verification, we provide several numerical simulations which follow a time-independent formulation.

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Cite This Study

André et al. (2026) studied this question.

synapsesocial.com/papers/69faa1eb04f884e66b532946https://doi.org/10.1007/s10851-026-01293-x
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