TY - JOUR
T1 - Effects of phase error on the relative height accuracy in interferometric synthetic aperture radar
AU - Ge, Shi Qi
AU - Chen, Liang
AU - Ding, Ze Gang
AU - Long, Teng
PY - 2012/2
Y1 - 2012/2
N2 - To investigate the variation of relative height accuracy measured by InSAR system, how the phase error impacts on the relative height accuracy is analyzed on the basis of InSAR elevation measurement principle. The factors, which affect phase error, are researched in detail, such as signal to noise ratio, volume scattering, and temporal decorrelation, etc. Above methods has been used to analyze the relative height accuracy for spaceborne InSAR system with different wave bands. The results show that, under the condition of short wave length and fixed baseline, there is a look downwards angle that would optimize the relative height accuracy. Further, the numerical simulation has verified the existence of optimum look-down angle. The method and conclusions presented in this article are helpful for parameter design and performance analysis of InSAR system.
AB - To investigate the variation of relative height accuracy measured by InSAR system, how the phase error impacts on the relative height accuracy is analyzed on the basis of InSAR elevation measurement principle. The factors, which affect phase error, are researched in detail, such as signal to noise ratio, volume scattering, and temporal decorrelation, etc. Above methods has been used to analyze the relative height accuracy for spaceborne InSAR system with different wave bands. The results show that, under the condition of short wave length and fixed baseline, there is a look downwards angle that would optimize the relative height accuracy. Further, the numerical simulation has verified the existence of optimum look-down angle. The method and conclusions presented in this article are helpful for parameter design and performance analysis of InSAR system.
KW - Interferometry synthetic aperture radar
KW - Phase error
KW - Relative height accuracy
UR - http://www.scopus.com/inward/record.url?scp=84861709101&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:84861709101
SN - 1001-0645
VL - 32
SP - 179
EP - 183
JO - Beijing Ligong Daxue Xuebao/Transaction of Beijing Institute of Technology
JF - Beijing Ligong Daxue Xuebao/Transaction of Beijing Institute of Technology
IS - 2
ER -