Decorrelation in interferometric radar echoes

Декорреляция в интерферометрических радиолокационных эхо
H. A. Zebker, John Villasenor
1992-01-01

digital terrain model (DTM)echo decorrelationinterferometric radarsynthetic aperture radar (SAR)topographic mapping
A radar interferometric technique for topographic mapping of surfaces, implemented utilizing a single synthetic aperture radar (SAR) system in a nearly repeating orbit, is discussed. The authors characterize the various sources contributing to the echo correlation statistics, and isolate the term which most closely describes surficial change. They then examine the application of this approach to topographic mapping of vegetated surfaces which may be expected to possess varying backscatter over time. It is found that there is decorrelation increasing with time but that digital terrain model generation remains feasible. The authors present such a map of a forested area in Oregon which also includes some nearly unvegetated lava flows. Such a technique could provide a global digital terrain map.>
1
A single SAR system in a nearly repeating orbit can be used for radar interferometric topographic mapping of surfaces.
2
Despite temporal decorrelation over vegetated areas, generation of digital terrain models (DTMs) remains feasible.
3
Echo correlation statistics can be decomposed to isolate a term that most closely describes surficial change.
4
The method is demonstrated by producing a topographic map of a forested area in Oregon including nearly unvegetated lava flows, suggesting potential for global DTM production.
5
Vegetated surfaces exhibit increasing decorrelation with time in interferometric radar echoes.

Interferometric radar echoes (from a single-repeat-orbit SAR system observing vegetated and non-vegetated surfaces)

Decorrelation characteristics and their sources affecting echo correlation statistics, and the impact of temporal decorrelation on topographic mapping/Digital Terrain Model generation of vegetated surfaces

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Publication Date
1992-01-01
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Authors
H. A. Zebker
John Villasenor
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