Title :
Control of hysteresis and kinematic error nonlinearities in harmonic drives for high speed precision control applications
Author :
Gandhi, Prasanna S. ; Ghorbel, Fathi H.
Author_Institution :
Dept. of Mech. Eng., Indian Inst. of Technol., Mumbai, India
fDate :
June 30 2004-July 2 2004
Abstract :
Important nonlinear transmission attributes exhibiting coupled dynamics and deteriorating performance of harmonic drive systems include hysteresis and kinematic error. This work presents control algorithms developed to compensate for hysteresis in the presence of kinematic error (KE) for precision position tracking applications with known smooth load on the output side. A model of hysteresis with a linear flexibility part and nonlinear dissipative part represented by a differential equation is used. The model is integrated with kinematic error model to obtain a set of equations governing system dynamics. First, a singularly perturbed model of the drive is derived from this set of equations. The proposed algorithm is then developed using integral manifold control approach involving slow and fast control terms. A recent result by authors on compensation of kinematic error alone is employed for the same. Simulation results with the proposed algorithms establish its effectiveness.
Keywords :
control nonlinearities; differential equations; drives; error analysis; hysteresis; integral equations; kinematics; manifolds; nonlinear control systems; position control; tracking; velocity control; control system dynamics; differential equation; harmonic drive systems; high speed precision control; hysteresis error model; integral manifold control method; kinematic error model; kinematic error nonlinearities; linear flexibility part; nonlinear dissipative part; nonlinear transmission; precision position tracking; singularly perturbed model;
Conference_Titel :
American Control Conference, 2004. Proceedings of the 2004
Conference_Location :
Boston, MA, USA
Print_ISBN :
0-7803-8335-4