2010
DOI: 10.1080/00207170903552067
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Optimal feedforward controller design for periodic inputs

Abstract: This article presents an optimal design methodology for feedforward controllers that face periodic reference/ disturbance inputs. The feedforward controller is parametrised as a finite impulse response filter, and its parameters are computed to minimise the worst-case tracking error in the presence of uncertainty on the input period and the plant model. Numerical results indicate that for nonminimum-phase systems exploiting the periodic input characteristics in the feedforward controller design is worthwhile, … Show more

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Cited by 8 publications
(4 citation statements)
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“…A calculation method is proposed in Varga (2004) to design fault detection filters for periodic systems. So far, with regard to the discrete-time periodic systems, the research activities have been extensively used in hard disk drive servo systems, wind turbines and automobile engines (Allen et al, 2011;Pipeleers and Swevers, 2010). In addition, the discrete-time periodic systems have been widely employed in various fields such as aerial systems, communication systems, image compression systems and voice processing (Lv, 2017).…”
Section: Introductionmentioning
confidence: 99%
“…A calculation method is proposed in Varga (2004) to design fault detection filters for periodic systems. So far, with regard to the discrete-time periodic systems, the research activities have been extensively used in hard disk drive servo systems, wind turbines and automobile engines (Allen et al, 2011;Pipeleers and Swevers, 2010). In addition, the discrete-time periodic systems have been widely employed in various fields such as aerial systems, communication systems, image compression systems and voice processing (Lv, 2017).…”
Section: Introductionmentioning
confidence: 99%
“…Reference [16] revealed the application of linear periodic system in satellite attitude control. Reference [17] dealt with the vibration attenuation problem of the helicopter transmission system. Because the vibration of the helicopter transmission system was a typical periodic vibration, the problem could be described by a linear periodic system model.…”
Section: Introductionmentioning
confidence: 99%
“…Offline iterative control (OIC) requires sufficient data to shape the command signal and reduce the acceleration tracking error. Repetitive excitations may cause premature damage to the specimen (Pipeleers and Swevers, 2010), while the adaptive controller allows online adjustment of its parameters to obtain the desired output. The commonly used ones include minimal control synthesis (MCS) (Stoten and Gómez, 2001;Gizatullin and Edge, 2007;Stoten and Shimizu, 2007;Shen et al, 2011b) adaptive inverse control (AIC) (Salehzadeh-Nobari et al, 1997;Karshenas et al, 2000;Shen et al, 2011a,b;Gang et al, 2013) and self-tuning control (Ghalibafian et al, 2004;Plummer, 2007a,b).…”
Section: Introductionmentioning
confidence: 99%