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Fuzzy logic control with genetic membership function parameters optimization for the output regulation of a servomechanism with nonlinear backlash.

, , and . Expert Syst. Appl., 37 (6): 4368-4378 (2010)

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Observer-based fuzzy trajectory-tracking controller for wheeled mobile robots with kinematic disturbances., and . Eng. Appl. Artif. Intell., (2024)Hybrid Genetic-Fuzzy Optimization of a Type-2 Fuzzy Logic Controller., , and . HIS, page 216-221. IEEE Computer Society, (2008)A fuzzy-genetic controller for the output regulation of a servomechanism with backlash., , and . HIMA, page 1-6. IEEE, (2009)Design and hardware implementation of a closed-loop stable fuzzy controller., and . CCE, page 1-6. IEEE, (2014)Intelligent Control of Dynamical Systems with Type-2 Fuzzy Logic and Stability Study., , , and . IC-AI, page 400-405. CSREA Press, (2005)Designing Type-2 Fuzzy Logic System Controllers via Fuzzy Lyapunov Synthesis for the Output Regulator of a Servomechanism with Nonlinear Backlash., , and . SMC, page 268-273. IEEE, (2009)Self-Sustaining Oscillations With an Internal Two-Fuzzy Inference System Based on the Poincaré-Bendixson Method., , , , and . IEEE Trans. Fuzzy Syst., 30 (7): 2563-2573 (2022)An Application of Fuzzy Lyapunov Synthesis in the Design of Type-2 Fuzzy Logic Controllers., , and . WSC, volume 75 of Advances in Intelligent and Soft Computing, page 229-236. Springer, (2009)Fuzzy logic control with genetic membership function parameters optimization for the output regulation of a servomechanism with nonlinear backlash., , and . Expert Syst. Appl., 37 (6): 4368-4378 (2010)Design of Stable Type-2 Fuzzy Logic Controllers based on a Fuzzy Lyapunov Approach., , and . FUZZ-IEEE, page 2331-2336. IEEE, (2006)