TY - GEN
T1 - Electromagnetic Backscattering from Radar Antenna Footprint Confined Infinite Surfaces
AU - Li, Xiaoxue
AU - Shan, Jingzhe
AU - Xie, Jianda
AU - Xu, Xiaojian
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - This work studies the electromagnetic (EM) backscattering from an infinite surface whose illuminated area is confined by radar antenna footprint, which represents the cases for calculation and measurement of radar clutter from land and sea. We highlight the fact in such cases that the illuminated area depends on the radar antenna footprint, thus always belonging to a near-field problem. The analytical expression for the radar cross section (RCS) of antenna footprint confined infinite plate at normal incidence is derived, with the radar distance-variant characteristics being explained in terms of two interfering scattering centers. Using Kirchhoff approximation (KA) and small perturbation method (SPM), the near-field backscattering from rough sea surfaces is also studied, where both spherical wavefront and antenna pattern tapering are considered. Numerical simulation results demonstrate that radar range and antenna pattern do impact on the calculated RCS and backscattering coefficient for both smooth and rough surfaces.
AB - This work studies the electromagnetic (EM) backscattering from an infinite surface whose illuminated area is confined by radar antenna footprint, which represents the cases for calculation and measurement of radar clutter from land and sea. We highlight the fact in such cases that the illuminated area depends on the radar antenna footprint, thus always belonging to a near-field problem. The analytical expression for the radar cross section (RCS) of antenna footprint confined infinite plate at normal incidence is derived, with the radar distance-variant characteristics being explained in terms of two interfering scattering centers. Using Kirchhoff approximation (KA) and small perturbation method (SPM), the near-field backscattering from rough sea surfaces is also studied, where both spherical wavefront and antenna pattern tapering are considered. Numerical simulation results demonstrate that radar range and antenna pattern do impact on the calculated RCS and backscattering coefficient for both smooth and rough surfaces.
KW - infinite surfaces
KW - near-field backscattering
KW - radar antenna footprint
KW - radar antenna pattern weighting
UR - https://www.scopus.com/pages/publications/85209633605
U2 - 10.1109/ISAPE62431.2024.10840577
DO - 10.1109/ISAPE62431.2024.10840577
M3 - 会议稿件
AN - SCOPUS:85209633605
T3 - ISAPE 2024 - 14th International Symposium on Antennas, Propagation and EM Theory
BT - ISAPE 2024 - 14th International Symposium on Antennas, Propagation and EM Theory
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 14th International Symposium on Antennas, Propagation and EM Theory, ISAPE 2024
Y2 - 23 October 2024 through 26 October 2024
ER -