access icon free Intelligent digital redesign of fuzzy controller for non-linear systems with packet losses

In this study, a novel intelligent digital redesign (IDR) technique is proposed for the sampled-data fuzzy controller of the non-linear system with packet losses. For the IDR development, the non-linear system is represented in the Takagi–Sugeno fuzzy model and the packet loss is assumed to be an independent, identically distributed Bernoulli random process. After introducing the traditional IDR technique, the closed-loop system with state-matching error and the state-matching error cost function are achieved for the development of the novel IDR technique. In the discrete-time Lyapunov sense, the exponential mean-square stability is guaranteed while minimising the state-matching error, and its sufficient condition is derived into linear matrix inequalities. Two examples are provided to verify the effectiveness of the proposed technique by comparison.

Inspec keywords: control system synthesis; discrete time systems; sampled data systems; nonlinear control systems; random processes; mean square error methods; intelligent control; closed loop systems; fuzzy control; asymptotic stability; Lyapunov methods; linear matrix inequalities

Other keywords: intelligent digital redesign technique; state-matching error cost function; discrete-time Lyapunov sense; exponential mean-square stability; distributed Bernoulli random process; sampled-data fuzzy controller; closed-loop system; linear matrix inequalities; IDR technique; packet losses; nonlinear systems; Takagi-Sugeno fuzzy model

Subjects: Neurocontrol; Discrete control systems; Nonlinear control systems; Fuzzy control; Control system analysis and synthesis methods; Stability in control theory; Algebra; Interpolation and function approximation (numerical analysis)

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http://iet.metastore.ingenta.com/content/journals/10.1049/iet-cta.2014.1287
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