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Titlebook: Self-Oscillations in Dynamic Systems; A New Methodology vi Luis T. Aguilar,Igor Boiko,Rafael Iriarte Book 2015 Springer International Publi

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etal, metal oxide and alloy at the nanoscale. Due to their physicochemical properties, ionic liquids (ILs) simultaneously demonstrated their potential in different areas such as nanocrystal synthesis, catalysis and energy. As a result, ionic liquids have been employed for the preparation of monodisp
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Robustification of the Self-Oscillation via Sliding Modes Tracking Controllersenerating SO using the TRC for a nominal model of the plant, as external generator of reference trajectories. The objective is to design a robust closed-loop system, via variable structure control, capable of tracking such trajectories. Two robust algorithms are revisited: second-order and high-orde
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Generating Self-Oscillations in Furuta Pendulumroblem becomes more complicated when oscillations are around an open-loop unstable equilibrium point that corresponds to the upright position of the pendulum. Recalling that TRC design requires linear model of the plant, such linearization was made through Taylor expansion around an unstable equilib
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Fixed-Phase Loop (FPL)op (PLL) is widely used for this purpose. PLL uses a closed-loop control principle for tracking the required phase shift. Another solution, which uses an open-loop control principle for the phase angle, can be realized on the TRC considered in this book. This solution is named here a fixed-phase loo
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