A novel variable structure controller for an electric generation hybrid system is proposed. The system is intended for variable alternate load and includes a wind turbine, photovoltaic generation and a battery bank. As a first step for the controller design, a dynamic model of the system is developed in a rotor reference frame. The control law is designed through the combination of passivity and sliding mode techniques. The objective is to control the operation of the wind subsystem to complement the photovoltaic generation, so the power demand is satisfied. During periods of scarce winds, the strategy is modified and the control objective becomes maximum wind generation.Fil: Valenciaga, Fernando. Universidad Nacional de La Plata. Facultad ...
International audienceThis paper addresses the problem of controlling power generation in variable-s...
This paper proposes a control approach and supplementary controllers for the operation of a hybrid s...
One of the most important control objectives for Standalone Wind Energy Conversion Systems (SWECS) i...
Hybrid generation systems produce electric energy from a wide variety of energy sources, including r...
This paper studies innovative application of sliding mode control (SMC) for a Hybrid Renewable Energ...
This paper presents the development and experimental results of a supervisor strategy and a sliding ...
This paper presents the development and experimental results of a supervisor strategy and a sliding ...
The connection of renewable energy conversion systems in distribution networks must comply with code...
The efficiency of the wind power conversions systems can be greatly improved using an appropriate co...
Abstract—This paper addresses the problem of controlling power generation in variable speed wind ene...
The subject of this paper pertains to sliding mode control and its application in nonlinear electric...
International audienceThis paper addresses the problem of controlling power generation in variable s...
This paper focuses on a sliding mode controller designed for a variable speed wind energy conversion...
Introduction. The implementation of renewable energy resources into the electrical grid has increase...
International audienceThe problem of controlling small-scale wind turbines providing energy to the g...
International audienceThis paper addresses the problem of controlling power generation in variable-s...
This paper proposes a control approach and supplementary controllers for the operation of a hybrid s...
One of the most important control objectives for Standalone Wind Energy Conversion Systems (SWECS) i...
Hybrid generation systems produce electric energy from a wide variety of energy sources, including r...
This paper studies innovative application of sliding mode control (SMC) for a Hybrid Renewable Energ...
This paper presents the development and experimental results of a supervisor strategy and a sliding ...
This paper presents the development and experimental results of a supervisor strategy and a sliding ...
The connection of renewable energy conversion systems in distribution networks must comply with code...
The efficiency of the wind power conversions systems can be greatly improved using an appropriate co...
Abstract—This paper addresses the problem of controlling power generation in variable speed wind ene...
The subject of this paper pertains to sliding mode control and its application in nonlinear electric...
International audienceThis paper addresses the problem of controlling power generation in variable s...
This paper focuses on a sliding mode controller designed for a variable speed wind energy conversion...
Introduction. The implementation of renewable energy resources into the electrical grid has increase...
International audienceThe problem of controlling small-scale wind turbines providing energy to the g...
International audienceThis paper addresses the problem of controlling power generation in variable-s...
This paper proposes a control approach and supplementary controllers for the operation of a hybrid s...
One of the most important control objectives for Standalone Wind Energy Conversion Systems (SWECS) i...