Output feedback control and output feedback finite-time control for nonlinear fractional-order interconnected systems
Author:
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Computational Mathematics
Link
https://link.springer.com/content/pdf/10.1007/s40314-021-01572-w.pdf
Reference37 articles.
1. Brandibur O, Kaslik E (2021) Exact stability and instability regions for two-dimensional linear autonomous multi-order systems of fractional-order differential equations. Fract Calc Appl Anal 24(1):225–253
2. Brandibur O, Garrappa R, Kaslik E (2021) Stability of systems of fractional-order differential equations with Caputo derivatives. Mathematics 9(8):914
3. Chang XH, Zhang L, Park JH (2015) Robust static output feedback H1 control for uncertain fuzzy systems. Fuzzy Sets Syst 273:87–104
4. Chen L, Chai Y, Wu R, Yan J (2012) Stability and stabilization of a class of nonlinear fractional-order systems with Caputo derivative. IEEE Trans Circuits Syst II 59:602–606
5. Chen L, He Y, Chai Y, Wu R (2014) New results on stability and stabilization of a class of nonlinear fractional-order systems. Nonlinear Dyn 75:633–641
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