DocumentCode :
1773153
Title :
Experimental demonstration for the attitude measurement capability of interferometric radar altimeter
Author :
Yunhua Zhang ; Wenshuai Zhai ; Xiang Gu ; Xiaojin Shi ; Xueyan Kang
Author_Institution :
Key Lab. of Microwave Remote Sensing, Center for Space Sci. & Appl. Res., Beijing, China
fYear :
2014
fDate :
16-18 June 2014
Firstpage :
1
Lastpage :
4
Abstract :
In this paper we will show that by using the nadir interferometric two beams, the obtained interferometric phase (InPha) can help us to estimate the baseline status. The basic idea is that the InPha is related to actual observation geometry, i.e. the baseline status, height of platform, incidence angles as well as the topography of the target. If we can rule out the possibility of height variation of platform or the target, then we can relate the phase variation to the baseline status (rolling angle and baseline length). An airborne interferometric altimetry experiment over lake with multi-carrier frequencies was carried out to test this idea and promising results were obtained. The retrieved roll angles from the InPhas of all three carrier frequencies agree with that from onboard GPS based INS measurement. Analysis on the following equation (3) shows that the measurement accuracy of roll angle from Inphas can be as high as 0.00043°.
Keywords :
Global Positioning System; airborne radar; attitude measurement; geometry; inertial navigation; radar altimetry; radar interferometry; remote sensing by radar; InPha; airborne interferometric altimetry experiment; attitude measurement capability; baseline length; baseline status estimation; carrier frequencies; incidence angles; interferometric radar altimeter; nadir interferometric phase; observation geometry; onboard GPS based INS measurement; platform height variation; rolling angle; target topography; Accuracy; Frequency measurement; Global Positioning System; Sea measurements; Sea surface; Surface topography; GPS; Interferometric radar algimeter; SWOT; WSOA; attitude measurement; interferometric phase;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radar Symposium (IRS), 2014 15th International
Conference_Location :
Gdansk
Print_ISBN :
978-617-607-552-3
Type :
conf
DOI :
10.1109/IRS.2014.6869294
Filename :
6869294
Link To Document :
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