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Nonnegative Matrix Factorization for Efficient Hyperspectral Image ProjectionHyperspectral imaging for remote sensing has prompted development of hyperspectral image projectors that can be used to characterize hyperspectral imaging cameras and techniques in the lab. One such emerging astronomical hyperspectral imaging technique is wide-field double-Fourier interferometry. NASA's current, state-of-the-art, Wide-field Imaging Interferometry Testbed (WIIT) uses a Calibrated Hyperspectral Image Projector (CHIP) to generate test scenes and provide a more complete understanding of wide-field double-Fourier interferometry. Given enough time, the CHIP is capable of projecting scenes with astronomically realistic spatial and spectral complexity. However, this would require a very lengthy data collection process. For accurate but time-efficient projection of complicated hyperspectral images with the CHIP, the field must be decomposed both spectrally and spatially in a way that provides a favorable trade-off between accurately projecting the hyperspectral image and the time required for data collection. We apply nonnegative matrix factorization (NMF) to decompose hyperspectral astronomical datacubes into eigenspectra and eigenimages that allow time-efficient projection with the CHIP. Included is a brief analysis of NMF parameters that affect accuracy, including the number of eigenspectra and eigenimages used to approximate the hyperspectral image to be projected. For the chosen field, the normalized mean squared synthesis error is under 0.01 with just 8 eigenspectra. NMF of hyperspectral astronomical fields better utilizes the CHIP's capabilities, providing time-efficient and accurate representations of astronomical scenes to be imaged with the WIIT.
Document ID
20150021525
Acquisition Source
Goddard Space Flight Center
Document Type
Conference Paper
Authors
Iacchetta, Alexander S.
(Rochester Univ. NY, United States)
Fienup, James R.
(Rochester Univ. NY, United States)
Leisawitz, David T.
(NASA Goddard Space Flight Center Greenbelt, MD United States)
Bolcar, Matthew R.
(NASA Goddard Space Flight Center Greenbelt, MD United States)
Date Acquired
November 20, 2015
Publication Date
August 9, 2015
Subject Category
Optics
Instrumentation And Photography
Report/Patent Number
GSFC-E-DAA-TN26926
Report Number: GSFC-E-DAA-TN26926
Meeting Information
Meeting: SPIE Conference on Optics and Photonics 2015
Location: San Diego, CA
Country: United States
Start Date: August 9, 2015
End Date: August 13, 2015
Sponsors: International Society for Optical Engineering
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
NMF
CHIP
WIIT
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