Self-Replicating and Self-Repairing Multicellular Automata
- 1 July 1998
- journal article
- Published by MIT Press in Artificial Life
- Vol. 4 (3) , 259-282
- https://doi.org/10.1162/106454698568585
Abstract
Biological organisms are among the most intricate structures known to man, exhibiting highly complex behavior through the massively parallel cooperation of numerous relatively simple elements, the cells. As the development of computing systems approaches levels of complexity such that their synthesis begins to push the limits of human intelligence, engineers are starting to seek inspiration in nature for the design of computing systems, both at the software and at the hardware levels. We present one such endeavor, notably an attempt to draw inspiration from biology in the design of a novel digital circuit: a field-programmable gate array (FPGA). This reconfigurable logic circuit will be endowed with two features motivated and guided by the behavior of biological systems: self-replication and self-repair.Keywords
This publication has 6 references indexed in Scilit:
- Methodologies for tolerating cell and interconnect faults in FPGAsIEEE Transactions on Computers, 1998
- Von Neumann revisited: A turing machine with self-repair and self-reproduction propertiesRobotics and Autonomous Systems, 1997
- A robust multiplexer-based FPGA inspired by biological systemsJournal of Systems Architecture, 1997
- An Implementation of von Neumann's Self-Reproducing MachineArtificial Life, 1995
- Simple Systems That Exhibit Self-Directed ReplicationScience, 1993
- Binary Decision DiagramsIEEE Transactions on Computers, 1978