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H2 and Mixed H2/Hinfty Stabilization and Disturbance Attenuation for Differential Linear Repetitive Processes.

, , , and . IEEE Trans. Circuits Syst. I Regul. Pap., 55-I (9): 2813-2826 (2008)

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H2 and Mixed H2/Hinfty Stabilization and Disturbance Attenuation for Differential Linear Repetitive Processes., , , and . IEEE Trans. Circuits Syst. I Regul. Pap., 55-I (9): 2813-2826 (2008)z - Transform and Volterra-Operator Based Approaches to Controllability and Observability Analysis for Discrete Linear Repetitive Processes., , , , and . Multidimens. Syst. Signal Process., 14 (4): 365-395 (2003)Guest Editorial., , and . Multidimens. Syst. Signal Process., 17 (2-3): 95-96 (2006)Strong practical stability and stabilization of discrete linear repetitive processes., , , and . Multidimens. Syst. Signal Process., 20 (4): 311-331 (2009)Performance-Enhanced Robust Iterative Learning Control With Experimental Application to PMSM Position Tracking., , , , and . IEEE Trans. Control. Syst. Technol., 27 (4): 1813-1819 (2019)Switched Differential Linear Repetitive Processes., , and . CCA, page 410-415. IEEE, (2010)Finite frequency domain design of dynamic controllers for differential linear repetitive processes., , and . ACC, page 3183-3188. IEEE, (2013)Lyapunov stability theory for linear repetitive processes - The 1D equation approach., , , , and . ECC, page 4774-4779. IEEE, (1999)Control for performance of ladder circuits with nonlinear elements., , , and . ECC, page 1455-1460. IEEE, (2019)LMI based output feedback control of discrete linear repetitive processes., , , and . ACC, page 1998-2003. IEEE, (2004)