Sequential design of switching H∞ lpv state-feedback control

Tianyi He, Guoming G. Zhu, Sean Shan Min Swei

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

3 Scopus citations

Abstract

This paper proposes a sequential approach for designing switching LPV (Linear Parameter-Varying) mathscr{H}{infty} state-feedback controllers with given division of scheduling parameter subregions. Different from the traditional simultaneous design of switching LPV control that usually results in a relatively high-dimensional optimization problem, the proposed method designs the switching LPV controllers sequentially, leading to a bundle of low-dimensional optimization problems to be solved iteratively. Interpolated controller variables are utilized on the overlapped subregions and independent PLMIs (Parametric Linear Matrix Inequalities) are formulated on individual subregion to synthesize switching LPV controllers. At the same time, the formulated PLMIs are able to guarantee that the mathscr{H}{infty} performances on overlapped subregions are no worse than adjacent subregions. With the proposed method, the mathscr{H}{infty} performance over the entire scheduling parameter region can be guaranteed by sequentially designing individual controller and interpolating controller variables on overlapped subregions. Application example shows the effectiveness of the proposed method and demonstrates improved performance over the conventional simultaneous design approach.

Original languageBritish English
Title of host publication2019 American Control Conference, ACC 2019
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages4547-4552
Number of pages6
ISBN (Electronic)9781538679265
StatePublished - Jul 2019
Event2019 American Control Conference, ACC 2019 - Philadelphia, United States
Duration: 10 Jul 201912 Jul 2019

Publication series

NameProceedings of the American Control Conference
Volume2019-July
ISSN (Print)0743-1619

Conference

Conference2019 American Control Conference, ACC 2019
Country/TerritoryUnited States
CityPhiladelphia
Period10/07/1912/07/19

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