Method for inverse computing digital surficial height from image of synthetic aperture radar in all polarization by one time of flight
A terrestrial digital, fully polarized technology, applied in the direction of reflection/re-radiation of radio waves, utilization of re-radiation, measurement devices, etc., can solve the problem of high technical difficulty of INSAR
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Embodiment 1
[0054] Embodiment 1, Guangdong Huizhou area.
[0055] Using the L-band data observed by SAR SIR-C on Guangdong Province, China on October 4, 1994, provided by the Jet Propulsion Laboratory (JPL) of the California Institute of Technology, the center of the image is at about (114.561°E, 22.815°N). The size of a pixel is 12.5×12.5m 2 . The incident angle of the SAR at the center of the image is 32.85°. image 3 It is a backscattered vv, hh, hv total power image with a size of 512×512 pixels intercepted from the original image, and its center is located at (114.7826°E, 23.1359°N), located in Huizhou, Guangdong Province, China.
[0056] from image 3 You can see the undulating hills running north-south. In order to highlight the main trend of the terrain, we have omitted some more subtle local undulations. Note that the horizontal azimuth γ defined here is the slope trend and orientation angle (such as figure 1 (a) shown).
[0057] S A and S R The calculation result is...
Embodiment 2
[0059] Embodiment 2, Alishan area, Taiwan
[0060] Using the L-band data observed by SAR SIR-C on Taiwan, China on October 4, 1994 provided by the Jet Propulsion Laboratory (JPL) of the California Institute of Technology, the center of the image is about (120.964°E, 23.487°N), each The pixel size is 12.5×12.5m 2 . The incident angle of the SAR at the center of the image is 32.85°. Figure 8 It is a backscattered vv, hh, hv total power image with a size of 512×512 pixels intercepted from the original image, and its center is (120.8626°E, 23.6659°N), located in the Alishan area of Taiwan, China.
[0061] Intuitive terrain structure and very simple ground elevation map reflected by inverted DEM and original SAR image [13] It is basically the same, and the trend of its main terrain is also consistent with the light and dark texture of the SAR image.
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