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Flatness-based MIMO control of hybrid stepper motors - design and implementation.

, , , , and . ACC, page 347-352. IEEE, (2014)

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Flatness-based feedback tracking control of a distributed parameter tubular reactor model., , and . ECC, page 2893-2898. IEEE, (2003)Flatness-based MIMO control of hybrid stepper motors - design and implementation., , , , and . ACC, page 347-352. IEEE, (2014)Feedforward control design under input constraints for a tubular reactor model., , , and . CDC, page 3968-3973. IEEE, (2006)Feedforward and Feedback Tracking Control of a 3DOF Helicopter Experiment under Input and Output Constraints., , , and . CDC, page 1586-1593. IEEE, (2006)Event-based observer design for observable nonlinear systems with bad input points., , and . ECC, page 2982-2987. IEEE, (2003)Flow rate control based on differential flatness in automatic pouring robot., , , and . CCA, page 1468-1475. IEEE, (2011)Fast Side-Stepping of the Triple Inverted Pendulum via Constrained Nonlinear Feedforward Control Design., , and . CDC/ECC, page 1096-1101. IEEE, (2005)Two-degree-of-freedom tracking control design for boundary controlled distributed parameter systems using formal power series., and . CDC, page 3307-3312. IEEE, (2004)Swing-up of the double pendulum on a cart by feedforward and feedback control with experimental validation., , and . Autom., 43 (1): 63-71 (2007)Simulation eines Radioteleskops mit Hilfe der blockorientierten Simulationssprache ISRSIM., , and . Simulationstechnik, volume 85 of Informatik-Fachberichte, page 636-640. Springer, (1984)