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Control design for LPV systems with input saturation and state constraints: An application to a semi-active suspension.

, , , and . CDC/ECC, page 3416-3421. IEEE, (2011)

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Applications of output error recursive estimation algorithms for adaptive signal processing., , and . ICASSP, page 639-642. IEEE, (1982)Full vehicle dynamics control based on LPV/ℋ∞ and flatness approaches., , , , and . ECC, page 2346-2351. IEEE, (2014)Induction motor control through AC/DC/AC converters., , , , , and . ACC, page 1755-1760. IEEE, (2010)Dynamic boundary stabilization of linear and quasi-linear hyperbolic systems., , , and . CDC, page 2952-2957. IEEE, (2012)Adaptive gain sliding observer based sliding controller for uncertain parameters nonlinear systems. Application to flexible joint robots., , and . CDC, page 3537-3542. IEEE, (2003)A new LPV/ℋ∞ semi-active suspension control strategy with performance adaptation to roll behavior based on non linear algebraic road profile estimation., , , , and . CDC, page 3511-3516. IEEE, (2013)An LPV/H~~ Active Suspension Control for Global Chassis Technology: Design and Performance Analysis., , , , and . ACC, page 2945-2950. IEEE, (2006)A methodology for optimal semi-active suspension systems performance evaluation., , , , and . CDC, page 2892-2897. IEEE, (2010)Combined distributed parameters and source estimation in tokamak plasma heat transport., , , and . ECC, page 47-52. IEEE, (2013)Why one should use Youla-Kucera parametrization in adaptive feedforward noise attenuationƒ., , , and . CDC, page 78-83. IEEE, (2019)