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Article type: Research Article
Authors: Liu, Qimao | Zhang, Jing | Yan, Liubin
Affiliations: Department of Civil and Structural Engineering, Aalto University, Espoo, Finland | College of Civil and Architecture Engineering, Guangxi University, Nanning, China | Department of Mechanical Engineering, Indiana University-Purdue University Indianapolis, Indianapolis, IN, USA
Note: [] Corresponding author: Qimao Liu, Department of Civil and Structural Engineering, Aalto University, Espoo, FI-00076 Aalto, Finland. Tel.: +358 9 470 23701; Fax: +358 9 470 23758; E-mail: [email protected]
Abstract: This paper developed an effective optimization method, i.e., gradient-Hessian matrix-based method or second order method, of frame structures subjected to the transient loads. An algorithm of first and second derivatives of dynamic displacement and stress with respect to design variables is formulated based on the Newmark method. The inequality time-dependent constraint problem is converted into a sequence of appropriately formed time-independent unconstrained problems using the integral interior point penalty function method. The gradient and Hessian matrixes of the integral interior point penalty functions are also computed. Then the Marquardt's method is employed to solve unconstrained problems. The numerical results show that the optimal design method proposed in this paper can obtain the local optimum design of frame structures and sometimes is more efficient than the augmented Lagrange multiplier method.
Keywords: Dynamic response optimization, gradient, Hessian matrix, time-dependent constraint
DOI: 10.3233/SAV-2012-0685
Journal: Shock and Vibration, vol. 19, no. 6, pp. 1445-1461, 2012
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