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This paper proposes a technique for the power flow control of three-phase four-wire low-voltage power systems, that aims at compensating the reactive and unbalance current terms measured at the point of common coupling of microgrids. It is based on a master/slave control architecture where a grid-interactive inverter, installed at the point of coupling between utility and microgrid, acts as master...
Cooperative control of distributed energy resources can improve dramatically the operation of residential microgrids, in terms of voltage stability, distribution efficiency and power quality, while allowing cost-effective management and sharing of energy resources among prosumers (electric customers which produce and consume energy). This paper describes an optimum control technique which provides...
Smart micro-grids offer a new and challenging application environment for modern power electronics. In fact, smart micro-grids are populated by a plethora of distributed energy resources (DERs), which interface with the distribution grid by means of electronic power processors (EPPs). This scenario enables the distributed control of the active and reactive currents flowing in the power lines, with...
Smart micro-grids offer a new and wide application domain for power electronics. In fact, every distributed energy resource (DER) includes an electronic power processor (EPP) to control the power exchange with the grid. If such distributed EPPs perform cooperatively, they have the capability to fully exploit all renewable power sources and energy storage units while improving the power quality and...
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