DocumentCode :
3632645
Title :
Fault-tolerance properties and self-healing abilities implementation in FPGA-based embryonic hardware systems
Author :
Cs. Szasz;V. Chindris
Author_Institution :
Department of Electrical Engineering, Technical University of Cluj, Cluj-N, 400020, Romania
fYear :
2009
Firstpage :
155
Lastpage :
160
Abstract :
The cell-based structure, which makes up the majority of biological organisms offers the ability to grow with fault-tolerance abilities and self-repair. By adapting these mechanisms and capabilities from nature, scientific approaches have helped researches understand related phenomena and associated with principles to engine complex novel digital systems and improve their capability. Founded by these observations, the paper is focused on computer-aided modeling, simulation and experimental research of embryonic systems fault-tolerance and self-healing abilities, with the purpose to implement VLSI hardware structures which are able to imitate cells or artificial organism operation mode, with similar robustness properties like their biological equivalents from nature. The presented theoretical and simulation approaches were tested on a laboratory prototype embryonic system (embryonic machine), built with major purpose to implement self-healing properties of living organisms.
Keywords :
"Fault tolerant systems","Embryo","Hardware","Biological system modeling","Computational modeling","Organisms","Biological systems","Fault tolerance","Engines","Digital systems"
Publisher :
ieee
Conference_Titel :
Industrial Informatics, 2009. INDIN 2009. 7th IEEE International Conference on
ISSN :
1935-4576
Print_ISBN :
978-1-4244-3759-7
Electronic_ISBN :
2378-363X
Type :
conf
DOI :
10.1109/INDIN.2009.5195795
Filename :
5195795
Link To Document :
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