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2017 | OriginalPaper | Chapter

Stability of Discrete-Time Internal Model Control Against Several Perturbations

Authors : Kevin Choo, N. S. Ahmad

Published in: 9th International Conference on Robotic, Vision, Signal Processing and Power Applications

Publisher: Springer Singapore

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Abstract

Internal Model Control (IMC) is a popular control approach that integrates the model of the plant into the controller. In most cases, it is common to have a mismatch between the plant and the model due to noise and disturbance. Actuator constraints may also be another source of instability or performance degradation in IMC. This has lead to the development of IMC structure to sustain its robustness against many different types of uncertainties. This note presents a stability analysis of discrete-time IMC which is subject to saturation and a bounded uncertainty. The stability is guaranteed via one of the discrete counterparts of Popov criterion, namely Jury-Lee criterion (This work was supported by Fundamental Research Grant Scheme (203/PELECT/6071267), Ministry of Education of Malaysia.).

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Literature
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Metadata
Title
Stability of Discrete-Time Internal Model Control Against Several Perturbations
Authors
Kevin Choo
N. S. Ahmad
Copyright Year
2017
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-1721-6_36