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This paper proposes a configuration based on an a PR controller to enhance the power quality of a Single-Phase Five-Level Inverter (SPFLI). A sliding mode control is used to compensate the voltage harmonics and regulate the load supply. The proposed configuration implementing a sliding mode controller, a resonance regulator helps improving the dynamic response of the system and may target any specified...
This paper proposes an adaptive nonlinear sliding mode control for feed drive systems. The aim is to increase precision by minimizing tracking errors of each feed drive axis without additional energy consumption. The proposed adaptive sliding mode control law is used to adjust controller gains based on the tracking error at each sampling time. Therefore, an appropriate control input can be generated...
This paper deals with the simultaneous application of thyristor controlled series capacitor based damping controller and power system stabilizer for stability improvement of dynamic power system. The Colonal selection algorithm is used to develop the control strategy for thyristor controlled series capacitor based damping controller and power system stabilizer. The new approach employs time-domain...
This paper proposes a modeling and control to enhance a grid on/ofï operation of a single-phase system consisting of a Single-Phase Five-Level Inverter (SPFLI). The Sliding mode control is adopted to compensate the current harmonics, the reactive power and the regulation of the DC bus voltage at the PCC during grid operation. The renewable energy based PMSG wind turbine is used to reduce the energy...
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