Method for obtaining radar cross section (RCS) of homogeneous bi-isotropic medium object
A radar cross-section and isotropic technology, applied to radio wave measurement systems, instruments, etc., can solve problems such as late-time oscillations, unstable high-frequency oscillations, etc., and achieve low cost and flexible models
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Embodiment 1
[0174] Such as figure 2 As shown, the double isotropic medium sphere 2, the background medium is free space 1, the radar incident electromagnetic wave 3 is incident along the Z-axis direction; the incident electromagnetic wave adopts the form of Gaussian pulse:
[0175] E → i ( r → , t ) = 4 E → 0 e - γ 2 / ( π T )
[0176] H → i ( r → , t ) = k ...
Embodiment 2
[0181] Such as Figure 9 As shown, electromagnetic scattering is performed on a uniform biisotropic cylinder to detect the radar scattering cross section of the scattering field; the radius of the cylinder is 0.02m, the height is 0.04m, and the relative permittivity ε r =4.0, relative permeability μ r = 1.0, κ r =0.3, χ r = 0.5; the radar incident electromagnetic wave is the same as that of Embodiment 1; the surface of the cylinder is divided into 610 triangular pieces and 915 unknown quantities by adopting triangular mesh division; the value of M is 120. The calculation result of the time domain integration method of the present invention is compared with the frequency integration method: Figure 10 is the bistatic radar cross section of the main polarization of cylindrical scattering, the horizontal axis represents the θ angle, and the vertical axis represents the radar cross section; Figure 10 It shows that the calculation results of the bistatic radar cross section of...
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