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  1. Fault-tolerant sampled-data mixed ℋ∞and passivity control of stochastic systems and its application.Maya Joby, R. Sakthivel, K. Mathiyalagan & S. Marshal Anthoni - 2016 - Complexity 21 (6):420-429.
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  • Finite-time stabilization of a class of chaotic systems with matched and unmatched uncertainties: An LMI approach.Saleh Mobayen - 2016 - Complexity 21 (5):14-19.
    This study presents the fundamental concepts and technical details of a U-model-based control system design framework, including U-model realisation from classic model sets, control system design procedures, and simulated showcase examples. Consequently, the framework provides readers with clear understandings and practical skills for further research expansion and applications. In contrast to the classic model-based design and model-free design methodologies, this model-independent design takes two parallel formations: it designs an invariant virtual controller with a specified closed-loop transfer function in a feedback (...)
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  • Fast terminal sliding mode controller design for nonlinear second-order systems with time-varying uncertainties.Saleh Mobayen - 2016 - Complexity 21 (2):239-244.
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  • Design of a robust tracker and disturbance attenuator for uncertain systems with time delays.Saleh Mobayen - 2016 - Complexity 21 (1):340-348.
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  • Exponential synchronization for fractional-order chaotic systems with mixed uncertainties.Kalidass Mathiyalagan, Ju H. Park & Rathinasamy Sakthivel - 2016 - Complexity 21 (1):114-125.
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  • Design of LMI-based global sliding mode controller for uncertain nonlinear systems with application to Genesio's chaotic system.Saleh Mobayen - 2016 - Complexity 21 (1):94-98.
    The fault ride-through capability and fault current issues are the main challenges in doubly fed induction generator- based wind turbines. Application of the bridge-type fault current limiter was recognized as a promising solution to cope with these challenges. This paper proposes a nonlinear sliding mode controller for the BFCL to enhance the FRT performance of the DFIG-based WT. This controller has robust performance in unpredicted voltage sag level and nonlinear features. Theoretical discussions, power circuit, and nonlinear control consideration of the (...)
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  • Fractional modeling and control of a complex nonlinear energy supply-demand system.Mohammad Pourmahmood Aghababa - 2015 - Complexity 20 (6):74-86.
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  • Chaotic fractional-order model for muscular blood vessel and its control via fractional control scheme.Mohammad Pourmahmood Aghababa & Mehdi Borjkhani - 2014 - Complexity 20 (2):37-46.
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  • Synchronization of circular restricted three body problem with lorenz hyper chaotic system using a robust adaptive sliding mode controller.Ayub Khan & Mohammad Shahzad - 2013 - Complexity 18 (6):58-64.
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