Result 1 to 16 of 16 total
Self-organization and peirce’s notion of communication and semiosis (English)
IJSSS 1, No. 2, 53-61 (2011).
1
io-port 50230442 Harnad, Stevan;
Steels, Luc;
Belpaeme, Tony;
Madden, Carol J.;
Lallée, Stéphane;
Dominey, Peter Ford;
Cowley, Stephen J.;
Weng, Juyang;
Greco, Alberto;
Giolito, Barbara;
Parisi, Domenico;
Müller, Vincent C.;
Loula, Angelo;
Queiroz, João;
Gudwin, Ricardo R.;
Cangelosi, Angelo
Research commentaries on cangelosi’s "solutions and open challenges for the symbol grounding problem" (English)
IJSSS 1, No. 1, 55-79 (2011).
2
Emergence of self-organized symbol-based communication in artificial creatures (English)
Cognitive Systems Research 11, No. 2, 131-147 (2010).
3
Symbol grounding problem (English)
Encyclopedia of Artificial Intelligence, 1543-1548 (2009).
4
A study of pipe interacting corrosion defects using the FEM and neural networks. (English)
Adv. Eng. Softw. 38, No. 11-12, 868-875 (2007).
5
Symbols are not uniquely human (English)
Biosystems 90, No. 1, 263-272 (2007).
6
Symbolic communication in artificial creatures: An experiment in artificial life. (English)
Bazzan, Ana L. C. (ed.) et al., Advances in artificial intelligence ‒ SBIA 2004. 17th Brazilian symposium on artificial intelligence, São Luis, Maranhão, Brazil, September 29 ‒ October 1, 2004. Proceedings. Berlin: Springer (ISBN 3-540-23237-0/pbk). Lecture Notes in Computer Science 3171. Lecture Notes in Artificial Intelligence, 336-345 (2004).
7
Symbolic communication in artificial creatures: an experiment in artificial life (English)
SBIA, 336-345 (2004).
8
Parallel ILU preconditioning, a priori pivoting and segregation of variables for iterative solution of the mixed finite element formulation of the Navier-Stokes equations. (English)
Int. J. Numer. Methods Fluids 41, No. 9, 977-996 (2003).
9
A priori pivoting in solving the Navier-Stokes equations. (English)
Commun. Numer. Methods Eng. 18, No. 10, 691-698 (2002).
10
Block and full matrix ILU preconditioners for parallel finite element solvers. (English)
Comput. Methods Appl. Mech. Eng. 191, No.13-14, 1381-1394 (2002).
11
A priori pivoting in incomplete Gaussian preconditioning for iterative solution of mixed finite-element formulation of the Navier-Stokes equations. (English)
Comput. Methods Appl. Mech. Eng. 190, No.29-30, 3735-3747 (2001).
12
Miscible displacement simulation by finite element methods in distributed memory machines. (English)
Comput. Methods Appl. Mech. Eng. 174, No.3-4, 339-354 (1999).
13
A new family of stable elements for nearly incompressible elasticity based on a mixed Petrov-Galerkin finite element formulation. (English)
Numer. Math. 53, No.1-2, 123-141 (1988).
14
Stability, convergence, and accuracy of a new finite element method for the circular arch problem. (English)
Comput. Methods Appl. Mech. Eng. 63, 281-303 (1987).
15
Mixed Petrov-Galerkin methods for the Timoshenko beam problem. (English)
Comput. Methods Appl. Mech. Eng. 63, 133-154 (1987).
16
Result 1 to 16 of 16 total