TY - JOUR
T1 - Analysis and computation on electromagnetic backscattering scattering coefficient of two-dimensional fractal sea surface
AU - Wang, Chungang
AU - Feng, Wenquan
AU - Li, Chunsheng
PY - 2013/9
Y1 - 2013/9
N2 - Based on the existing two-dimensional fractal sea surface model, a novel electromagnetic backscattering coefficient model was derived in the HH and VV polarization mode, respectively. Average statistics of the backscatter coefficient from all resolution cells in some wavelength regions was computed and affect of seawater permittivity, electromagnetic waves incident angle, incident frequency, and wind speed and direction on the backscattering coefficient was analyzed in the time domain. The fractal dimension of the backscatter coefficient was estimated by box-counting. Numerical analysis method was adopted to demonstrate that the real and imaginary parts of the backscattering coefficient are fractal and their fractal dimensions are both equal to the fractal dimension of the backscattering coefficient or the two-dimensional fractal sea surface. Thus it indicates that the radar echo from the sea surface is also fractal, and provides an important method for the use of the fractal theory in sea weak target detection.
AB - Based on the existing two-dimensional fractal sea surface model, a novel electromagnetic backscattering coefficient model was derived in the HH and VV polarization mode, respectively. Average statistics of the backscatter coefficient from all resolution cells in some wavelength regions was computed and affect of seawater permittivity, electromagnetic waves incident angle, incident frequency, and wind speed and direction on the backscattering coefficient was analyzed in the time domain. The fractal dimension of the backscatter coefficient was estimated by box-counting. Numerical analysis method was adopted to demonstrate that the real and imaginary parts of the backscattering coefficient are fractal and their fractal dimensions are both equal to the fractal dimension of the backscattering coefficient or the two-dimensional fractal sea surface. Thus it indicates that the radar echo from the sea surface is also fractal, and provides an important method for the use of the fractal theory in sea weak target detection.
KW - 2D improved fractal sea surface model
KW - Box-counting dimension estimation
KW - Electromagnetic back scattering coefficient
KW - Fractal dimension
KW - Polarization
UR - https://www.scopus.com/pages/publications/84888610340
M3 - 文章
AN - SCOPUS:84888610340
SN - 1001-5965
VL - 39
SP - 1212
EP - 1217
JO - Beijing Hangkong Hangtian Daxue Xuebao/Journal of Beijing University of Aeronautics and Astronautics
JF - Beijing Hangkong Hangtian Daxue Xuebao/Journal of Beijing University of Aeronautics and Astronautics
IS - 9
ER -