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http://dx.doi.org/10.7839/ksfc.2016.13.3.024

Improvement of Steady State Response Using PI+Double Integral Controller  

Jung, Gyu Hong (Department of Computer Aided Mechanical Design Engineering, Daejin University)
Publication Information
Journal of Drive and Control / v.13, no.3, 2016 , pp. 24-31 More about this Journal
Abstract
The performance characteristics of a dynamic control system are evaluated according to the transient and steady-state responses. The transient performance is the controllability of the output for the tracking of the reference or the ability to reduce or reject the effects of unwanted disturbances; alternatively, the steady-state performance is represented by the magnitude of the control error at the steady state. As the effects of the two performances on each other are reciprocal, a controller design that shows a zero steady-state error for the ramp input is uncommon because of the challenge regarding the achievement of an acceptable transient response. This paper proposes a PI+double-integral controller for the elimination of the steady-state error for the ramp input while a sound transient performance is maintained. The control-gain design procedure is described by the second-order response for the step input and the response of the error dynamics for the ramp input. The PI+double-integral controller is designed for the first-order transfer function that is derived from a system identification with the open-loop experiment data of the dc-motor. The simple structure of the proposed controller enables the adoption of a low-end microcontroller for the implementation of a real-time control. The experiment results show that the control performance is as effective as that of the simulation analysis for the operating point of linear system; furthermore, the PI+double-integral controller can be conveniently applied to the control system, which is desirable for the improvement of the steady-state error.
Keywords
PI Control; Double Integral Control; Speed Control; Steady State Error; Ramp Input; System Identification;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
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