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Issue title: Special Section: Intelligent Algorithms for Complex Information Services - Recent Advances and Future Trends
Guest editors: Andino Maseleno, Xiaohui Yuan and Valentina E. Balas
Article type: Research Article
Authors: Hu, Zhengquana; b; * | Liu, Yub | Niu, Xiaoweib | Lei, Guopinga
Affiliations: [a] School of Electronic & Information Engineering, ChongQing Three Gorges University, Chongqing, China | [b] Chongqing Key Laboratory of Geological Environment Monitoring and Disaster Early Warning in Three Gorges Reservoir Area, Chongqing, China
Correspondence: [*] Corresponding author. Zhengquan Hu, E-amil: hzq250314@sanxiau.edu.cn.
Abstract: As aerospace technology, computer technology, network communication technology and information technology become more and more perfect, a variety of sensors for measurement and remote sensing are constantly emerging, and the ability to acquire remote sensing data is also continuously enhanced. Synthetic Aperture Radar Interferometry (InSAR) technology greatly expands the function and application field of imaging radar. Differential InSAR (DInSAR) developed based on InSAR technology has the advantages of high precision and all-weather compared with traditional measurement methods. However, DInSAR-based deformation monitoring is susceptible to spatiotemporal coherence, orbital errors, atmospheric delays, and elevation errors. Since phase noise is the main error of InSAR, to determine the appropriate filtering parameters, an iterative adaptive filtering method for interferogram is proposed. For the limitation of conventional DInSAR, to improve the accuracy of deformation monitoring as much as possible, this paper proposes a deformation modeling based on ridge estimation and regularization as a constraint condition, and introduces a variance component estimation to optimize the deformation results. The simulation experiment of the iterative adaptive filtering method and the deformation modeling proposed in this paper shows that the deformation information extraction method based on differential synthetic aperture radar has high precision and feasibility.
Keywords: InSAR, DInSAR, deformation monitoring, variance component estimation
DOI: 10.3233/JIFS-189016
Journal: Journal of Intelligent & Fuzzy Systems, vol. 39, no. 4, pp. 5311-5318, 2020
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