Linear parameter-varying control: Difference between revisions

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==Linear parameter-varying systems==
LPV systems are a very special class of nonlinear systems which appears to be well suited for control of dynamical systems with parameter variations. In general, LPV techniques provide a systematic design procedure for gain-scheduled multivariable controllers. This methodology allows performance, robustness and [[Bandwidth (signal processing)|bandwidth]] limitations to be incorporated into a unified framework.<ref>{{cite web|last=J. Balas|first=Gary|title=Linear Parameter-Varying Control And Its Application to Aerospace Systems|url=http://www.icas.org/ICAS_ARCHIVE/ICAS2002/PAPERS/541.PDF|publisher=ICAS|accessdate=2013-01-29|date=2002}}</ref><ref>{{cite web|last=Wu|first=Fen|title=Control of Linear Parameter Varying systems|url=httphttps://www.maeresearchgate.ncsu.edunet/wupublication/paper/PhDthesis.ps271526928_Control_of_Linear_Parameter_Varying_Systems|publisher=Univ. of California, Berkeley|accessdate=20132024-0112-2916|date=1995|url-status=dead|archiveurl=https://web.archive.org/web/20140103153558/http://www.mae.ncsu.edu/wu/paper/PhDthesis.ps|archivedate=2014-01-03}}</ref> A brief introduction on the LPV systems and the explanation of terminologies are given below.
 
===Parameter dependent systems===
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==References==
<references/>
Wu, Fen (1995). "Control of Linear Parameter Varying systems"https://www.researchgate.net/publication/271526928_Control_of_Linear_Parameter_Varying_Systems (PDF). University of California, Berkeley. Modified on Dec. 16, 2024.
 
==Further reading==