Self-organizing Biologically Inspired Configurable Circuits
Author:
Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-21283-3_1
Reference5 articles.
1. Canham, R., Tyrrell, A.M.: An embryonic array with improved efficiency and fault tolerance. In: Lohn, J., et al. (eds.) Proceedings of the NASA/DoD Conference on Evolvable Hardware (EH 2003), pp. 265–272. IEEE Computer Society, Los Alamitos (2003)
2. Mange, D., Stauffer, A., Petraglio, E., Tempesti, G.: Self-replicating loop with universal construction. Physica D 191(1-2), 178–192 (2004)
3. Stauffer, A., Mange, D., Rossier, J.: Design of self-organizing bio-inspired systems. In: Arslan, T., et al. (eds.) Proceedings of the 2007 NASA/ESA Conference on Evolvable Adaptative Hardware and Systems (AHS 2007), pp. 413–419. IEEE Computer Society, Los Alamitos (2007)
4. Lecture Notes in Artificial Intelligence;A. Stauffer,2007
5. Upegui, A., Thomas, Y., Sanchez, E., Perez-Uribe, A., Moreno, J.-M., Madredas, J.: The Perplexus bio-inspired reconfigurable circuit. In: Lohn, J., et al. (eds.) Proceedings of the NASA/ESA Conference on Adaptative Hardware and Systems (AHS 2007), pp. 600–605. IEEE Computer Society, Los Alamitos (2007)
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