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Further results on global state feedback stabilization of nonlinear high-order feedforward systems
1Institute of Automation, Qufu Normal University, Shandong Province 273165, China.
Abstract:
In this paper, by introducing a combined method of sign function, homogeneous domination and adding a power integrator, and overcoming several troublesome obstacles in the design and analysis, the problem of state feedback control for a class of nonlinear high-order feedforward systems with the nonlinearity's order being relaxed to an interval rather than a fixed point is solved.
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