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Proceedings ArticleDOI

Repetitive control applied to a walking piezo actuator

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TLDR
In this paper, an adjusted RC scheme is introduced, which incorporates a time-varying delay that is dependent on the momentary orientation of the legs during the walking movement.
Abstract
The performance of systems that exhibit repetitive disturbances can be significantly improved using repetitive control (RC). If the period-time of the repetitive disturbance is exactly known and constant in time, perfect asymptotic disturbance rejection can be achieved. In this paper, we apply RC to a high-precision stage driven by a walking piezo actuator with four bimorph piezoelectric legs. The repetitive nature of the walking movement introduces repetitive disturbances in the system, which are periodic with respect to the angular orientation of the legs, but not with respect to time. Therefore, an adjusted RC scheme is introduced, which incorporates a time-varying delay that is dependent on the momentary orientation of the legs during the walking movement. Experiments show that the tracking error can be significantly reduced by the adjusted RC method compared to standard RC. Furthermore, the adjusted RC scheme can also suppress repetitive disturbances for varying setpoint velocities.

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Citations
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Journal ArticleDOI

Analysis and Design of Repetitive Controllers for Applications in Distorted Distribution Grids

TL;DR: A generalized design procedure for repetitive current controllers in distorted distribution grids to obtain good disturbance rejection properties and well behaved and robust system dynamics is proposed.
Proceedings ArticleDOI

A generalized control design approach for a repetitive controller on current harmonics

TL;DR: In this article, a generalized design procedure for repetitive current controllers to obtain good disturbance rejection properties and well behaved and robust system dynamics is proposed, based on an accurate discrete time model.
Proceedings ArticleDOI

High precision control of a walking piezoelectric motor in bending mode

TL;DR: This work presents functional description of a walking piezoelectric motor and its control in bending mode and a dynamical model of the actuator is derived based on simple mass spring damper system.
Proceedings ArticleDOI

Nanometric positioning of a piezo walker

TL;DR: Experimental results for staircase and sinusoidal references reveal precise positioning capabilities of the system with the proposed control scheme down to few nanometers of the piezoelectric motor.
References
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Journal ArticleDOI

Zero Phase Error Tracking Algorithm for Digital Control

TL;DR: In this article, a digital feed-forward control algorithm for tracking desired time varying signals is presented, which is particularly suited to the general motion control problems including robotic arms and positioning tables.
Journal ArticleDOI

Repetitive control system: a new type servo system for periodic exogenous signals

TL;DR: In this article, a control scheme called repetitive control is proposed, in which the controlled variables follow periodic reference commands, and a high-accuracy asymptotic tracking property is achieved by implementing a model that generates the periodic signals of period L into the closed-loop system.
Journal ArticleDOI

Digital control of repetitive errors in disk drive systems

TL;DR: A modified prototype repetitive controller is applied as a plug-in module to a Winchester disk drive with a preexisting analog feedback controller to demonstrate its efficacy in the reduction of this periodic component.
Journal ArticleDOI

Brief Repetitive control for systems with uncertain period-time

TL;DR: A robust repetitive controller structure is proposed that uses multiple memory-loops in a certain feedback configuration, such that small changes in period-time do not diminish the disturbance rejection properties.
Journal ArticleDOI

H/sup /spl infin// repetitive control of DC-AC converters in microgrids

TL;DR: In this article, a voltage controller design method for DC-AC converters supplying power to a microgrid, which is also connected to the power grid, is proposed, which leads to a very low harmonic distortion of the output voltage, even in the presence of nonlinear loads and/or grid distortions.
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