Hs. Park et H. Adeli, A NEURAL DYNAMICS MODEL FOR STRUCTURAL OPTIMIZATION - APPLICATION TO PLASTIC DESIGN OF STRUCTURES, Computers & structures, 57(3), 1995, pp. 391-399
In a companion paper we presented a neural dynamics model for optimiza
tion of structures by integrating penalty function method, Lyapunov st
ability theorem, Kuhn-Tucker condition, and the neural dynamics concep
t, In this paper, we apply the model to optimum plastic design of low-
rise steel frames. The objective and constraint functions are scaled t
o improve the efficiency and numerical conditioning of the algorithm.
As demonstrated in the convergence histories for the four examples pre
sented, the neural dynamics model yields stable results no matter how
the starting point is selected. Since the neural dynamics model lends
itself to concurrent processing effectively, development of a concurre
nt neural dynamics model for optimization of large structures appears
a very promising approach, which is currently under investigation by t
he authors.