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A dem extraction method of vehicle-mounted SAR based on single control point information

An extraction method and single control point technology, applied in the direction of radio wave reflection/re-radiation, instrument, height/level measurement, etc., can solve the problems of volume, cost and weight reduction, low height of vehicle SAR imaging, and heavy workload, etc. To achieve the effect of simplifying field work

Active Publication Date: 2021-11-26
WUHAN UNIV +2
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  • Application Information

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Problems solved by technology

[0005] In recent years, with the emergence of various radar wave systems, the miniaturization of SAR systems has gradually begun to be used and popularized. The carrying platforms will no longer be limited to traditional spaceborne platforms and large airborne platforms. Such platforms have begun to appear. For spaceborne SAR platforms, they have the advantage of wide imaging range, but the DEM accuracy obtained by InSAR processing is generally low due to factors such as orbit, decoherence, and low image resolution. High-precision application requirements, among which, vehicle-mounted SAR generally adopts the frequency-modulated continuous wave (FMCW) radar system, which is the mainstream of miniaturized synthetic aperture radar. Generate a large signal bandwidth and obtain high distance resolution. At the same time, the volume, cost and weight of the radar are greatly reduced. The research on the extraction of DEM by vehicle-mounted SAR interferometry can effectively solve the problem of low elevation accuracy and time-consuming problems of space-borne and airborne interferometry. Problems such as low resolution and heavy workload are of great significance. The technology for obtaining DEM for the interference processing of vehicle-mounted SAR data is somewhat different from the traditional interference processing of space-borne and manned airborne SAR, and there are still many problems that need to be solved urgently. Solved, the main problems include: (1) The vehicle-mounted SAR imaging height is low, and the main and auxiliary images are decoherent caused by large viewing angle changes; (2) In order to meet the real-time engineering requirements, the calibration of the vehicle-mounted SAR system needs to be repeated due to the variable structure. As a result, there is no problem of portability, etc. The solution of these problems requires the key technology of vehicle-mounted SAR to extract DEM. Therefore, the present invention proposes a method for extracting DEM of vehicle-mounted SAR based on single control point information to solve the problems in the prior art.

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  • A dem extraction method of vehicle-mounted SAR based on single control point information
  • A dem extraction method of vehicle-mounted SAR based on single control point information
  • A dem extraction method of vehicle-mounted SAR based on single control point information

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Embodiment Construction

[0067] In order to deepen the understanding of the present invention, the present invention will be further described below in conjunction with the examples, which are only used to explain the present invention, and do not constitute a limitation to the protection scope of the present invention.

[0068] according to figure 1 , 2 As shown, the present embodiment provides a method for extracting DEM of vehicle-mounted SAR based on single control point information, comprising the following steps:

[0069] Step 1: Data Preprocessing

[0070] According to the range and azimuth filtering of SAR images, and the track data of the vehicle platform, the geometric diagram of the vehicle-mounted dual-antenna radar interference is constructed, as shown in figure 1 , set the phase centers of the main and auxiliary radar images as AB, the ground point as P, and the horizontal and vertical components of the baseline AB as b || and b ⊥ , set the viewing angle under the radar as θ, the rea...

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Abstract

The invention discloses a DEM extraction method of a vehicle-mounted SAR based on single control point information, comprising the following steps: data preprocessing, interferometric phase calculation, phase unwrapping, distance correction, phase correction and elevation correction; the invention only needs one control point The information can be obtained to realize the DEM extraction work of the vehicle-mounted SAR, which can effectively simplify the field work. Through the simulation test, the error of the DEM extraction method based on the single control point information and the influence of each interference parameter on the result are analyzed, and the theory of the method is proved. Accuracy and achievability, clarified the huge impact of baseline parameters on DEM accuracy, requiring the accuracy of baseline length estimation to be at least at the millimeter level. It has been verified that the DEM error obtained by the DEM extraction method based on single control point information is only 0.30m, which is effective And high precision.

Description

technical field [0001] The invention relates to the technical field of DEM extraction, in particular to a DEM extraction method for vehicle-mounted SAR based on single control point information. Background technique [0002] The digital elevation model (DEM) describes the surface elevation information, and has a wide range of applications in the fields of surveying and mapping, hydrology, meteorology, geomorphology, geology, soil, engineering construction, communications, military and other national economic and national defense construction, as well as humanities and natural sciences; [0003] Synthetic Aperture Radar (SAR), as an active remote sensing sensor, is not affected by bad weather and has all-weather and all-weather earth observation capabilities. Its application in terrain surveying and mapping can effectively make up for the lack of optical means such as aviation / aerospace photogrammetry ; [0004] Synthetic Aperture Radar Interferometry (InSAR) technology was ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01S13/90G01S7/41G01C7/04G01C5/00
CPCG01C5/00G01C7/04G01S7/41G01S13/9023
Inventor 周伟马洪琪肖海斌潘斌陈鸿杰程翔迟福东马刚周志伟
Owner WUHAN UNIV