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Control and optimization of semi-passively actuated multibody systems

Viktor Berbyuk (Institutionen för maskin- och fordonssystem, Mekaniska system)
Preprints of NATO Advanced Study Institute on Virtual Nonlinear Multibody Systems, Eds.: Werner Schiehlen and Michael Valasek, Czech Technical University in Prague, June-23-July 3, 2002 Vol. 2 (2002), p. 40-49.
[Konferensbidrag, refereegranskat]

The controlled multibody systems are under the consideration. At the lecture special emphasis is put on the study of underactuated and overactuated systems having different type of actuators (external powered drives, unpowered spring-damper like drives, etc.). Several questions are addressed about the role of inherent dynamics, and how much multibody system should be governed by external powered drives and how much by the system’s inherent dynamics. The lecture consists of the following parts: introduction to the subject in question; mathematical statement of the optimal control problems that are suitable for modelling of controlled motion and optimization of semi-passively controlled multibody systems with different degrees of actuation; description of the methodology and the numerical algorithms for solution of control and optimization problems for semi-passively actuated multibody systems. The solutions of several optimal control problems for different kind of semi-passively actuated multibody systems are presented. Namely, the energy-optimal control of planar semi-passively controlled three-link manipulator robot, the energy-optimal control of closed-loop chain semi-passively actuated SCARA-like robot; optimization of the hydraulic and pneumatic drives of the multibody system modelled the human locomotor apparatus with above-knee prostheses, and others. Future perspectives in area of control and optimization problems of the semi-passively actuated multibody systems are discussed.

Denna post skapades 2006-09-25. Senast ändrad 2015-12-17.
CPL Pubid: 9821


Institutioner (Chalmers)

Institutionen för maskin- och fordonssystem, Mekaniska system (1900-2004)


Övrig teknisk mekanik

Chalmers infrastruktur