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February 6, 2026Remote Sensing1 citationsOpen Access

A Prominent-Reflector-Based Sub-Band Error Estimation Method for Synthetic Bandwidth Synthetic Aperture Radar

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ZXZhiyuan XueYNYijiang NanLLL. K. Li

Key Points

  • The study aims to develop a method for estimating and compensating sub-band errors in synthetic bandwidth synthetic aperture radar systems.
  • Analyzed sources and impacts of sub-band errors
  • Proposed a three-step estimation method: time-delay, amplitude, and phase error
  • Utilized prominent reflectors for error estimation from focused sub-band images
  • Achieved high accuracy in estimating sub-band errors
  • Reduced execution time compared to existing methods
  • Validated effectiveness with real Ka-band synthetic bandwidth SAR data

Abstract

Sub-band errors are inevitable in synthetic bandwidth synthetic aperture radar (SAR) systems due to differences in signal paths and frequency responses of the components used for different sub-bands, which degrade imaging performance if not properly compensated. In this paper, a prominent-reflector-based sub-band error estimation method is proposed for synthetic bandwidth SAR. Based on the analysis of the sources and impacts of sub-band errors, the proposed method estimates and compensates the errors in three steps, corresponding to time-delay error, amplitude error, and phase error. By leveraging the stable reflective properties of prominent reflectors in the scene, the proposed method directly derives sub-band error estimates from focused sub-band images in the time domain. Compared to existing methods, the proposed method achieved robust, high-accuracy performance while requiring less execution time. The effectiveness and efficiency of the proposed method are validated using real data collected by a Ka-band synthetic bandwidth SAR system.

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Cite This Study

Xue et al. (2026) studied this question.

synapsesocial.com/papers/698586118f7c464f23009fc6https://doi.org/10.3390/rs18030503
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