Adaptive robust motion control of linear motors for precision manufacturing
نویسندگان
چکیده
Linear motors offer several advantages over their rotary counterparts in many precision manufacturing applications requiring linear motion; linear motors can achieve a much higher speed and have the potential of gaining a higher load positioning accuracy due to the elimination of mechanical transmission mechanisms. However, these advantages are obtained at the expense of added difficulties in controlling such a system. Specifically, linear motors are more sensitive to disturbances and parameter variations. Furthermore, certain types of linear motors such as the iron core are subject to significant nonlinear effects due to periodic cogging force and force ripple. To address all these issues, the recently proposed adaptive robust control (ARC) strategy is applied and a discontinuous projection-based ARC controller is constructed. In particular, based on the special structures of various periodic nonlinear forces, design models consisting of known basis functions with unknown weights are used to approximate those unknown nonlinear forces. On-line parameter adaptation is then utilized to reduce the effect of various parametric uncertainties such as unknown weights, inertia, and motor parameters while certain robust control laws are used to handle the uncompensated uncertain nonlinearities effectively for high performance. The resulting ARC controller achieves a guaranteed transient performance and a guaranteed final tracking accuracy in the presence of both parametric uncertainties and uncertain nonlinearities. In addition, in the presence of parametric uncertainties, the controller achieves asymptotic output tracking. Extensive simulation results are shown to illustrate the effectiveness of the proposed algorithm. 2002 Elsevier Science Ltd. All rights reserved.
منابع مشابه
Adaptive Robust Precision Motion Control of Linear Motors with Ripple Force Compensations: Theory and Experiments
This paper studies the high performance robust motion control of linear motors which are subjected to significant force ripple. Based on the structural property of linear motors, some simple models with unknown weights are used to approximate the force ripple as well as other reproducible nonlinearities, such as friction. The unknown weights are adjusted on-line via certain parameter adaptation...
متن کاملAdaptive Robust Precision Motion Control of Linear Motors with Negligible Electrical Dynamics: Theory and Experiments
This paper studies the high performance robust motion control of linear motors that have a negligible electrical dynamics. A discontinuous projection based adaptive robust controller (ARC) is first constructed. The controller guarantees a prescribed transient performance and final tracking accuracy in general while achieving asymptotic tracking in the presence of parametric uncertainties only. ...
متن کاملAdaptive Robust Precision Motion Control of Linear Motors with Ripple Force Compensations
Linear motors o er several advantages over their rotary counterparts in many applications requiring linear motion by eliminating mechanical transmission mechanisms. However, these advantages are obtained at the expense of added diÆculties in controlling such a system. This paper studies the high performance robust motion control of an iron core linear motor which is subject to signi cant nonlin...
متن کاملOutput feedback adaptive robust precision motion control of linear motors
This paper studies high performance robust motion control of linear motors that have a negligible electrical dynamics. A discontinuous projection based adaptive robust controller (ARC) is constructed. Since only output signal is available for measurement, an observer is "rst designed to provide exponentially convergent estimates of the unmeasurable states. This observer has an extended "lter st...
متن کاملAdaptive Robust Control of Linear Motors for Precision Manufacturing
Linear motors are sensitive to disturbances and parameter variations. Certain types of linear motors such as the iron core are also subject to nonlinear e ects due to periodic cogging force and force ripple. An adaptive robust controller based on the discontinuous projection method is constructed to address these issues. In particular, based on the particular structures of various periodic nonl...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 1999