Interferometric phase diagram generation method based on dot trace texture information and semantic segmentation of correlation coefficients
This paper proposes a method for generating interferometric phase diagrams, which includes interferometric image registration based on Dot Trace Texture Information (DTTI) and interferometric phase filtering based on semantic segmentation. First, the InSAR images are sharpened according to the diffe...
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Published in | Geocarto international Vol. 39; no. 1 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Taylor & Francis
04.06.2024
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ISSN | 1010-6049 1752-0762 1752-0762 |
DOI | 10.1080/10106049.2024.2364678 |
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Abstract | This paper proposes a method for generating interferometric phase diagrams, which includes interferometric image registration based on Dot Trace Texture Information (DTTI) and interferometric phase filtering based on semantic segmentation. First, the InSAR images are sharpened according to the different backscattering characteristics of various pixel values, and DTTI is extracted to generate the Dot Trace Texture Map (DTTM). Second, SIFT feature points are extracted from two InSAR coherent complex images. They are then screened by comparison with DTTI. These selected points are used to calculate the registration relationship, ensuring precise registration of the two images. Third, the interferometric phase diagram is segmented by semantics based on correlation coefficients. For high-quality interferometric phase regions, we use two-dimensional frequency domain rotational symmetric Gaussian Laplace and wavelet domain filters successively. For low-quality regions, we use an average filter to smooth out noise. The superiority of the proposed algorithm was verified through comparative experiments. |
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AbstractList | This paper proposes a method for generating interferometric phase diagrams, which includes interferometric image registration based on Dot Trace Texture Information (DTTI) and interferometric phase filtering based on semantic segmentation. First, the InSAR images are sharpened according to the different backscattering characteristics of various pixel values, and DTTI is extracted to generate the Dot Trace Texture Map (DTTM). Second, SIFT feature points are extracted from two InSAR coherent complex images. They are then screened by comparison with DTTI. These selected points are used to calculate the registration relationship, ensuring precise registration of the two images. Third, the interferometric phase diagram is segmented by semantics based on correlation coefficients. For high-quality interferometric phase regions, we use two-dimensional frequency domain rotational symmetric Gaussian Laplace and wavelet domain filters successively. For low-quality regions, we use an average filter to smooth out noise. The superiority of the proposed algorithm was verified through comparative experiments. |
Author | Xie, Dongliang Zhang, Hui Zhang, Xuelin Wang, Zhaoxia |
Author_xml | – sequence: 1 givenname: Xuelin surname: Zhang fullname: Zhang, Xuelin organization: College of Electronic Information Engineering, Inner Mongolia University – sequence: 2 givenname: Zhaoxia surname: Wang fullname: Wang, Zhaoxia organization: Engineering Research Center of Large Energy Storage Technology, Ministry of Education – sequence: 3 givenname: Hui surname: Zhang fullname: Zhang, Hui organization: State Key Laboratory of Networking and Switching Technology, Beijing University of Posts and Telecommunications – sequence: 4 givenname: Dongliang surname: Xie fullname: Xie, Dongliang organization: State Key Laboratory of Networking and Switching Technology, Beijing University of Posts and Telecommunications |
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SubjectTerms | algorithms domain Dot trace texture information image analysis image registration interferometric phase filtering interferometry physical phases semantic segmentation SIFT algorithm texture wavelet |
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Title | Interferometric phase diagram generation method based on dot trace texture information and semantic segmentation of correlation coefficients |
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