Design and Control of Nonlinear Mechanical Systems for Minimum Time
Author(s) -
J.B. Cardoso,
P.P. Moita,
A.J. Valido
Publication year - 2007
Publication title -
shock and vibration
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.418
H-Index - 45
eISSN - 1875-9203
pISSN - 1070-9622
DOI - 10.1155/2008/741205
Subject(s) - nonlinear system , discretization , control theory (sociology) , interval (graph theory) , control variable , lti system theory , stiffness , space time , mechanical system , mathematical optimization , mathematics , computer science , control (management) , linear system , engineering , mathematical analysis , structural engineering , chemical engineering , statistics , physics , quantum mechanics , combinatorics , artificial intelligence
This paper presents an integrated methodology for optimal design and control of nonlinear flexible mechanical systems, including minimum time problems. This formulation is implemented in an optimum design code and it is applied to the nonlinear behavior dynamic response. Damping and stiffness characteristics plus control driven forces are considered as decision variables. A conceptual separation between time variant and time invariant design parameters is presented, this way including the design space into the control space and considering the design variables as control variables not depending on time. By using time integrals through all the derivations, design and control problems are unified. In the optimization process we can use both types of variables simultaneously or by interdependent levels. For treating minimum time problems, a unit time interval is mapped onto the original time interval, then treating equally time variant and time invariant problems. The dynamic response and its sensitivity are discretized via space-time finite elements, and may be integrated either by at-once integration or step-by-step. Adjoint system approach is used to calculate the sensitivities
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