Construction and inversion method for vegetation height inversion model based on second-order Fourier-Legendre polynomial
A highly inversion, polynomial technology, applied in the direction of reflection/re-radiation of radio waves, utilization of re-radiation, measurement devices, etc. effect achieved
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Embodiment 1
[0062] The construction method of the vegetation height inversion model based on the second-order Fourier-Legendre polynomial of the present embodiment 1, the specific steps are as follows:
[0063] Step S10, polarization interference processing.
[0064] The full-polarization SAR image based on the vertical structure of the vegetation cover was obtained, and the number 0103 image was the main image, and the number 0107, 0109, and 0111 images were the auxiliary images, which constituted three interferometric baselines. SAR image registration, flat ground effect removal, multi-view processing (azimuth direction 2: distance direction 1) and polarization interference, and then obtain the complex coherence coefficient corresponding to the polarization mode Where p=x, y, m represent different interference baselines, and q=1, 2,..., n represent different polarization modes.
[0065] In this embodiment, each baseline adopts two coherent optimal polarization modes with maximum phase...
Embodiment 2
[0084]This embodiment is based on the establishment of a second-order Fourier-Legendre polynomial based on providing a second-order Fourier-Legendre polynomial multi-baseline multi-polarization vegetation height inversion model, providing a second-order Fourier-Legendre polynomial vegetation Highly inversion methods such as figure 1 shown, including the following steps:
[0085] Step X10, establishing a vegetation height inversion model;
[0086] Using the multi-baseline and multi-polarization vegetation height inversion model established in the above embodiment 1, press e again ix =cosx+isinx transforms the model, and then splits the real part and imaginary part of the model to obtain the observation equations corresponding to the model:
[0087]
[0088] In step X20, the initial value of the vegetation parameter is determined.
[0089] The main purpose of this step is to obtain the initial value of the vegetation parameters of the multi-baseline multi-polarization vege...
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