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Parallel asynchronous hardware implementation of image processing algorithmsResearch is being carried out on hardware for a new approach to focal plane processing. The hardware involves silicon injection mode devices. These devices provide a natural basis for parallel asynchronous focal plane image preprocessing. The simplicity and novel properties of the devices would permit an independent analog processing channel to be dedicated to every pixel. A laminar architecture built from arrays of the devices would form a two-dimensional (2-D) array processor with a 2-D array of inputs located directly behind a focal plane detector array. A 2-D image data stream would propagate in neuron-like asynchronous pulse-coded form through the laminar processor. No multiplexing, digitization, or serial processing would occur in the preprocessing state. High performance is expected, based on pulse coding of input currents down to one picoampere with noise referred to input of about 10 femtoamperes. Linear pulse coding has been observed for input currents ranging up to seven orders of magnitude. Low power requirements suggest utility in space and in conjunction with very large arrays. Very low dark current and multispectral capability are possible because of hardware compatibility with the cryogenic environment of high performance detector arrays. The aforementioned hardware development effort is aimed at systems which would integrate image acquisition and image processing.
Document ID
19900012903
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Coon, Darryl D.
(Microtronics Associates Pittsburgh, PA, United States)
Perera, A. G. U.
(Microtronics Associates Pittsburgh, PA, United States)
Date Acquired
September 6, 2013
Publication Date
February 1, 1990
Publication Information
Publication: NASA, Ames Research Center, Vision Science and Technology at NASA: Results of a Workshop
Subject Category
Computer Programming And Software
Accession Number
90N22219
Funding Number(s)
CONTRACT_GRANT: NAS1-18645
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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