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Author

Jihong Yang

Bio: Jihong Yang is an academic researcher. The author has contributed to research in topics: Image map & Image resolution. The author has an hindex of 1, co-authored 1 publications receiving 1 citations.

Papers
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Book ChapterDOI
16 Sep 2014
TL;DR: A method to determine the maximum side perspective with map precision constraints, and set up a conversion relationship among satellite side view, DEM error and image point error is put forward.
Abstract: In order to shorten the revisit period, and improve the efficiency of imaging, currently, all the in orbit high resolution remote sensing satellites adopt side-view imaging technology. When satellites imaging with a side perspective, it would inevitably cause the degradation of image quality, like spatial resolution reduction, image deformation incensement, and the reduction of positioning accuracy. In addition, with the increase of the side perspective, the error of DEM data will be amplified in the process of ortho-rectification, which, thus, will bring bigger error for image mapping accuracy. To address this problem, embarked from the impact of side view and DEM precision on image point error, this paper used Quick bird image data of the same area but different side perspectives, and simulate the impacts of different DEM elevation error on different side view image. At last we put forward a method to determine the maximum side perspective with map precision constraints, and set up a conversion relationship among satellite side view, DEM error and image point error. Finally, the paper combines the errors of 1:50000 DEM, ASTERGDEM and the requirement of ortho-image drawing, discusses and gives the values of maximum side perspective in the mountains and plains.

1 citations


Cited by
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01 Jan 2009
TL;DR: Using the high resolution Quick Bird image and DEM data of different terrain area, applying physical model and rational function model methods for ortho-rectification, Wang et al. as discussed by the authors studied the accuracy of quick bird image orthorectification under different terrain condition through the experimental research on multi-scene image.
Abstract: Using the high resolution Quick Bird image and DEM data of different terrain area,applying physical model and rational function model methods for ortho-rectification,this paper studied the accuracy of Quick Bird image ortho-rectification under different terrain condition through the experimental research on multi-scene image.It provided reference for the application of Quick Bird image in large scale topographical map updating.

1 citations