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Context dependent anti-aliasing image reconstructionImage Reconstruction has been mostly confined to context free linear processes; the traditional continuum interpretation of digital array data uses a linear interpolator with or without an enhancement filter. Here, anti-aliasing context dependent interpretation techniques are investigated for image reconstruction. Pattern classification is applied to each neighborhood to assign it a context class; a different interpolation/filter is applied to neighborhoods of differing context. It is shown how the context dependent interpolation is computed through ensemble average statistics using high resolution training imagery from which the lower resolution image array data is obtained (simulation). A quadratic least squares (LS) context-free image quality model is described from which the context dependent interpolation coefficients are derived. It is shown how ensembles of high-resolution images can be used to capture the a priori special character of different context classes. As a consequence, a priori information such as the translational invariance of edges along the edge direction, edge discontinuity, and the character of corners is captured and can be used to interpret image array data with greater spatial resolution than would be expected by the Nyquist limit. A Gibb-like artifact associated with this super-resolution is discussed. More realistic context dependent image quality models are needed and a suggestion is made for using a quality model which now is finding application in data compression.
Document ID
19900006893
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Beaudet, Paul R.
(Westinghouse Electric Corp. Baltimore, MD., United States)
Hunt, A.
(Westinghouse Research and Development Center Pittsburgh, PA., United States)
Arlia, N.
(Westinghouse Research and Development Center Pittsburgh, PA., United States)
Date Acquired
September 6, 2013
Publication Date
November 1, 1989
Publication Information
Publication: NASA, Langley Research Center, Visual Information Processing for Television and Telerobotics
Subject Category
Instrumentation And Photography
Accession Number
90N16209
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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