Information Technology Reference
In-Depth Information
2. M. S. Capcarrere, M. Sipper, and M. Tomassini. Two-state, r=1 cellular automaton
that classifies density. Physical Review Letters , 77(24):4969-4971, December 1996.
3. J. P. Crutchfield and M. Mitchell. The evolution of emergent computation. Pro-
ceedings of the National Academy of Sciences USA , 92(23):10742-10746, 1995.
4. T. E. Ingerson and R. L. Buvel.
Structure in asynchronous cellular automata.
Physica D , 10:59-68, 1984.
5. M. Land and R. K. Belew. No perfect two-state cellular automata for density
classification exists. Physical Review Letters , 74(25):5148-5150, June 1995.
6. M. Mitchell, P. T. Hraber, and J. P. Crutchfield. Revisiting the edge of chaos:
Evolving cellular automata to perform computations. Complex Systems , 7:89-130,
1993.
7. B. Schonfisch and A. de Roos. Synchronous and asynchronous updating in cellular
automata. BioSystems , 51:123-143, 1999.
8. M. Sipper. Evolution of Parallel Cellular Machines: The Cellular Programming
Approach . Springer-Verlag, Heidelberg, 1997.
9. M. Sipper, M. Tomassini, and O. Beuret. Studying probabilistic faults in evolved
non-uniform cellular automata. International Journal of Modern Physics C ,
7(6):923-939, 1996.
10. S. Wolfram. Cellular Automata and Complexity . Addison-Wesley, Reading, MA,
1994.
Search WWH ::




Custom Search