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Based on Lyapunov Krasovskii theory, T S fuzzy model, and delayed feedback control scheme, the FDOFS controller is designed and an analytic expression of the controller is shown.
According to the solution of H∞ sub-optimal control problem, the robust controller is designed and simplified to lower order linear model which is easily realized in EHSS.
A control system using a PI controller is designed and implemented on a PC with an 8051 microprocessor.
Based on two subsystems, a sliding mode controller is designed and applied to control the WFU meanwhile a proportional controller is designed and applied to control the PS-GMAW.
In this paper, a fuzzy controller is designed and simulated exclusively to control a hydropower plant with several hydraulically coupled turbines under nonlinear process conditions.
In this paper an anti-slip predictive controller is designed and implemented in order to control the rear wheels of a V-PRA (Variable Powered Rear Axle) vehicle.
A model-based controller is designed and shown to be effective in controlling the DC link voltage, resulting in the well-conditioned operation of the hybrid vehicle.
With the characteristics of the proportional control valve (42 LPM, bandwidth of 6 Hz), a robust controller is designed and implemented upon the lining system.
A H∞ robust controller is designed and implemented on the device in order to control the object position.
A hybrid fuzzy-like PD and I controller is designed and implemented on the two systems.
Based on the Lyapunov stability theory, a robust controller is designed and its robustness and stability are analytically proved.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com