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Multiobjective state-feedback control design with non-common LMI solutions: change of variables via affine functions.

, , and . ACC, page 848-853. IEEE, (2001)

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On H∞ model reduction using LMIs., and . IEEE Trans. Automat. Contr., 49 (7): 1187-1191 (2004)On Gain-Scheduled State-Feedback Controller Synthesis With Quadratic Stability Condition., , and . IEEE Control. Syst. Lett., 4 (3): 662-667 (2020)Constructing a sequence of relaxation problems for robustness analysis of uncertain LTI systems via dual LMIs., , and . CDC, page 2174-2179. IEEE, (2009)Exact stability analysis of 2D systems using LMIs., , and . CDC, page 1270-1271. IEEE, (2004)Computing the Distance to Uncontrollability via LMIs: Lower and Upper Bounds Computation and Exactness Verification., and . CDC, page 5772-5777. IEEE, (2006)H2 State-Feedback Control for Continuous-Time Systems under Positivity Constraint., , and . ECC, page 3797-3802. IEEE, (2019)On the degree of polynomial parameter-dependent Lyapunov functions for robust stability of single parameter-dependent LTI systems: A counter-example to Barmish's conjecture., and . Autom., 42 (9): 1599-1603 (2006)l2 induced norm analysis of discrete-time LTI systems for nonnegative input signals and its application to stability analysis of recurrent neural networks., , , , , and . Eur. J. Control, (2021)Robust Performance Analysis of Uncertain LTI Systems: Dual LMI Approach and Verifications for Exactness., , and . IEEE Trans. Automat. Contr., 54 (5): 938-951 (2009)Periodically time-varying controller synthesis for multiobjective H2/H∞ control of discrete-time systems and analysis of achievable performance., , and . Syst. Control. Lett., 60 (9): 709-717 (2011)