Title :
A novel analysis method of deformation accuracy for spaceborne PS-DInSAR
Author :
Song Chen;Huaping Xu;Chunsheng Li;Jianlong Li;Wei Li
Author_Institution :
School of Electronics &
Abstract :
Spaceborne PS-DInSAR is an advanced remote sensing technology for achiving global surface deformation measurement, it has a series of advantages such as all time and weather, low cost, high deformation accuracy and so on. This paper focuses on the deformation accuracy of PS-DInSAR. Based on basic principle of spaceborne DInSAR, this paper introduces the principle of PS-DInSAR, and sets up the mathematical model of PS-DInSAR deformation accuracy, deduces the accuracy model of PS-DInSAR deformation detection by a novel method. Besides, PS-DInSAR deformation accuracy is analyzed by simulation. The research of this paper has guiding significance for the analysis of spaceborne PS-DInSAR overall performance.
Keywords :
"Accuracy","Synthetic aperture radar","Interferometry","Decorrelation","Deformable models","Mathematical model","Spaceborne radar"
Conference_Titel :
Imaging Systems and Techniques (IST), 2015 IEEE International Conference on
DOI :
10.1109/IST.2015.7294465