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Titlebook: Advances and Applications in Nonlinear Control Systems; Sundarapandian Vaidyanathan,Christos Volos Book 2016 Springer International Publis

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楼主: Impacted
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Filterability of leucocyte suspensionsuations in a Banach space with nonlinear causal mappings and bounded operators acting on the delayed state. These equations include partial differential, integro-differential and other traditional equations. Estimates for the norms of solutions are established. They give us explicit conditions for t
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Filterability of leucocyte suspensionsderactuated system under study can be modeled by two subsystems. In the controller design, a sliding surface for each subsystem is defined and adaptive fuzzy systems are utilized to online estimate the unknown nonlinear functions. To estimate the fuzzy system parameters, a set of adaptation laws are
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https://doi.org/10.1007/978-94-009-5008-5and control. Generally they are used in stable mode of operation where loop error magnitude is small and system nonlinearity can be replaced by linear approximation. However, PLL designers over the years observed that due to variation of signal and loop parameters, dynamics of a PLL enters in a regi
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Blood Flow in the Heart and Large Vesselst physical laws, logic rules, and operating constraints. These are describe by linear dynamic equations subject to linear inequalities involving real and integer variables. The changes which may appear over such dynamics, are modeled by using the auxiliary variables which take into account the inter
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Venous Thrombosis and Pulmonary Embolismheorem (2002) and using only the plant dynamics equations of the Lotka–Volterra models and the prey population sizes as the output functions. Numerical examples and MATLAB simulations are provided to demonstrate the nonlinear observer design for the multi-species Lotka–Volterra models.
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Filterability of leucocyte suspensions equations (1990). Numerical simulations using MATLAB are shown to illustrate the phase portraits of the Vaidyanathan hyperjerk hyperchaotic system and the output regulation results for the Vaidyanathan hyperjerk hyperchaotic system.
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