ZHI Xi-yang, ZHANG Wei, HOU Qing-yu* etc. Optimization for optical remote sensing imaging system based on space-invariant image restoration[J]. Editorial Office of Optics and Precision Engineering, 2015,23(5): 1490-1497
ZHI Xi-yang, ZHANG Wei, HOU Qing-yu* etc. Optimization for optical remote sensing imaging system based on space-invariant image restoration[J]. Editorial Office of Optics and Precision Engineering, 2015,23(5): 1490-1497 DOI: 10.3788/OPE.20152305.1490.
Optimization for optical remote sensing imaging system based on space-invariant image restoration
An optimizing design idea for optical remote sensing imaging systems based on restoration processing was proposed. The main imaging-chain components effecting restoration processing performance were explored by theoretical analyzed
semi-physical simulation experiments and orthogonal experiments. According to deducing a mathematical model of restoration problems
it points out in theory that the main factors impacting the restoration performance are the imaging system Modulation Transfer Function space-variant (MTF
SV
)
data compression ratio (
C
R
) and nonuniformity correction error (
NC
R
). Then
the restoration distortions that effect the interpretation capability of images owing to the above factors were analyzed by using a semi-physical imaging platform and simulation experiments. Finally
the relationship between restoration performance and the above metrics was established by using combined mathematics and an orthogonal experiment for the restored images with multilevel MTF
SV
C
R
and
NC
R
. Experimental results indicate that the restoration performs well in a quite low MTF value at Nyquist frequency (only 0.07)
the MTF
SV
is less than 10%
C
R
less than 4:1 and the
NC
R
is no more than 3%
which not only implements the MTF area more than 70% but also keeps Signal to Noise Ratio(SNR) invariant and achieves available image quality for the interpretation as well.
关键词
Keywords
references
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