TY - GEN
T1 - A Novel Compensation Method to Calibrate Dispersion Effect for Spaceborne Synthetic Aperture Radar
AU - Sun, Weitian
AU - Xu, Huaping
AU - Wu, Siyuan
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - The ionospheric dispersion effect introduces additional phase errors to the chirp signal, leading to undesirable deterioration in range compression, including range shift and main lobe broadening. The contrast optimization autofocus (COA), as a representative of parametric-based methods calibrating the dispersion effect, updates the chirp rate empirically and manually. Moreover, it only compensates for quadratic phase errors while failing to address linear and higher-order phase errors. To this end, this paper proposes a novel compensation method. Compared to the COA, two specific step sizes are derived to quantitatively restrict the range shift and quadratic phase errors for accurately updating the chirp rate. Subsequently, the total electron content (TEC) inferred by chirp rate errors is applied to construct the conjugate compensation term associated with range-frequency achieving full-order phase error calibration. The simulated experiment demonstrates the superiority of the proposed method.
AB - The ionospheric dispersion effect introduces additional phase errors to the chirp signal, leading to undesirable deterioration in range compression, including range shift and main lobe broadening. The contrast optimization autofocus (COA), as a representative of parametric-based methods calibrating the dispersion effect, updates the chirp rate empirically and manually. Moreover, it only compensates for quadratic phase errors while failing to address linear and higher-order phase errors. To this end, this paper proposes a novel compensation method. Compared to the COA, two specific step sizes are derived to quantitatively restrict the range shift and quadratic phase errors for accurately updating the chirp rate. Subsequently, the total electron content (TEC) inferred by chirp rate errors is applied to construct the conjugate compensation term associated with range-frequency achieving full-order phase error calibration. The simulated experiment demonstrates the superiority of the proposed method.
KW - Ionospheric dispersion effect
KW - phase error compensation
KW - synthetic aperture radar (SAR)
UR - https://www.scopus.com/pages/publications/86000002428
U2 - 10.1109/ICSIDP62679.2024.10868226
DO - 10.1109/ICSIDP62679.2024.10868226
M3 - 会议稿件
AN - SCOPUS:86000002428
T3 - IEEE International Conference on Signal, Information and Data Processing, ICSIDP 2024
BT - IEEE International Conference on Signal, Information and Data Processing, ICSIDP 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2nd IEEE International Conference on Signal, Information and Data Processing, ICSIDP 2024
Y2 - 22 November 2024 through 24 November 2024
ER -