Structural Optimization is intended to supplement the engineer s
box of analysis and design tools making optimization as commonplace
as the finite element method in the engineering workplace. It
begins with an introduction to structural optimization and the
methods of nonlinear programming such as Lagrange multipliers,
Kuhn-Tucker conditions, and calculus of variations. It then
discusses solution methods for optimization problems such as the
classic method of linear programming which leads to the method of
sequential linear programming. It then proposes using sequential
linear programming together with the incremental equations of
structures as a general method for structural optimization. It is
furthermore intended to give the engineer an overview of the field
of structural optimization."
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