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http://dx.doi.org/10.6109/jkiice.2016.20.11.2193

An Error position detection and recovery algorithm at 3×3 matrix digital circuit by mimicking a Neuron  

Kim, Seok-Hwan (Department of Electronics Engineering, Mokwon University)
Abstract
In this study, we propose an algorithm to simulate the function of the coupling structure and having two neurons to find out exactly recover the temporary or permanent position errors that can occur during operation in a digital circuit was separated by function, a $3{\times}3$ array. If any particular part in the combined cells are differentiated cells have a problem that function to other cells caused an error and perform the same function are subjected to a step of apoptosis by the surrounding cells. Designed as a function block in the function and the internal structure having a cell structure of this digital circuit proposes an algorithm. In case of error of module 4 of block 1 considered in this study, sum of all module numbers for horizontal direction, total module number sum for vertical direction, and sum of all module numbers for diagonal direction, We were able to find the location.
Keywords
Neuron; Fault Detection; DMR; Repair Algorithm;
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Times Cited By KSCI : 1  (Citation Analysis)
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1 A.J. Greensted and A. M. Tyrell "RISA : A hardware platform for evolutionary design," in Proc. IEEE Workshop Evolvable Adapt Hardware, pp. 1-7, 2007.
2 S. H. Kim, C. W. Hur, "A Study of Error Detection and Repair on DNA Duplicate Structure," Journal of the Korea Institute of Information and Communication Engineering, vol. 15, no. 11, pp. 255-362, Dec. 2011.
3 H. Shayani, P. Bentley, A.M. Tyrrel "A Cellular Structure for Online Routing for Digital Spiking Neuron Axons and Dendrites on FPGAs, " in 8th International Conference on Evolvable Systems, vol. 5216, pp. 273-284, 2008.
4 T.J. Koickal, L.C. Gouveia, A. Hamilton, "A Programmable spike-timing based circuit block for reconfigurabel neuromorphic computing," Neurocomputing, vol. 72, no. 16, pp. 3609-3616, Oct. 2009.   DOI
5 A. Avizienis and J. P. Kelly, "Fault tolerance by design diversity:Concepts and experiments," IEEE Computer, vol. 17, no. 8, pp. 67-80, Aug. 1984.   DOI
6 S. H. Kim, "An Error Detection and Recovery Algorithm in Digital Circuit Mimicking by Self-Repair on Cell," Journal of the Korea Institute of Information and Communication Engineering, vol. 19, no. 11, pp. 2745-2750, Nov. 2015.   DOI