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Necessary Stability Conditions for Linear Difference Equations in Continuous Time.

, , and . IEEE Trans. Automat. Contr., 63 (12): 4405-4412 (2018)

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Some remarks on duality over a commutative ring., , and . Math. Comput. Simul., 76 (5-6): 375-387 (2008)Necessary Stability Conditions for Linear Difference Equations in Continuous Time., , and . IEEE Trans. Automat. Contr., 63 (12): 4405-4412 (2018)Stability Analysis for a Class of Linear $22$ Hyperbolic PDEs Using a Backstepping Transform., , , , and . IEEE Trans. Autom. Control., 65 (7): 2941-2956 (2020)Approximation of linear distributed parameter systems by delay systems., , , and . Autom., (2016)Difference equations in continuous time with distributed delay: Exponential estimates., , and . ACC, page 4859-4864. IEEE, (2014)Approximation of distributed delays., , , and . Syst. Control. Lett., (2014)Experimentation of melting kinetics control in a convective food thawing process., , , , and . IEEE Trans. Contr. Sys. Techn., 13 (5): 826-831 (2005)A Bridge between Lyapunov-Krasovskii and Spectral Approaches for Stability of Difference Equations., , , , and . TDS, page 30-35. International Federation of Automatic Control, (2013)Disturbance attenuation by dynamic output feedback for input-delay systems., , and . Autom., 44 (8): 2202-2206 (2008)Exponential L2-stability for a class of linear systems governed by continuous-time difference equations., , , and . Autom., 50 (12): 3299-3303 (2014)