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An LPV control approach for comfort and suspension travel improvements of semi-active suspension systems.

, , , , , and . CDC, page 5560-5565. IEEE, (2010)

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Generic decoupling problems for structured time-delay systems.. Int. J. Systems Science, 34 (8-9): 513-521 (2003)H∞ Delay-Scheduled Control of Linear Systems With Time-Varying Delays., , and . IEEE Trans. Automat. Contr., 54 (9): 2255-2260 (2009)Memory-resilient gain-scheduled state-feedback control of uncertain LTI/LPV systems with time-varying delays., , and . Syst. Control. Lett., 59 (8): 451-459 (2010)Unified ℋ∞ Observer for a Class of Nonlinear Lipschitz Systems: Application to a Real ER Automotive Suspension., , and . IEEE Control. Syst. Lett., 3 (4): 817-822 (2019)Interpolation of multi-LPV control systems based on Youla-Kucera parameterization., , , and . Autom., (2021)A New Predictive Approach for Bilateral Teleoperation With Applications to Drive-by-Wire Systems., , and . IEEE Trans. Robotics, 22 (6): 1146-1162 (2006)Toward switching/interpolating LPV control: A review., , , and . Annu. Rev. Control., (2022)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)Some LPV approaches for semi-active suspension control., , , and . ACC, page 1567-1572. IEEE, (2012)A motion-scheduled LPV control of full car vertical dynamics., , and . ECC, page 129-134. IEEE, (2015)