NASA NTRS · 19960054095
Highly-Parallel, Highly-Compact Computing Structures Implemented in Nanotechnology
Abstract
In this paper, we describe work in which we are evaluating how the evolving properties of nano-electronic devices could best be utilized in highly parallel computing structures. Because of their combination of high performance, low power, and extreme compactness, such structures would have obvious applications in spaceborne environments, both for general mission control and for on-board data analysis. However, the anticipated properties of nano-devices mean that the optimum architecture for such systems is by no means certain. Candidates include single instruction multiple datastream (SIMD) arrays, neural networks, and multiple instruction multiple datastream (MIMD) assemblies.
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Crawley, D. G., Duff, M. J. B., Fountain, T. J., Moffat, C. D., Tomlinson, C. D.. 1995-01-01. Highly-Parallel, Highly-Compact Computing Structures Implemented in Nanotechnology. https://ntrs.nasa.gov/citations/19960054095
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