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- W2627088004 abstract "With the use of the renewable sources increasingly, application of the distributed generation (DG) in the distribution system acquired more attention. The DG systems are powered by micro sources such as fuel cells, photovoltaic (PV) systems, and batteries. Energy storage systems (ESSs) are enabling technologies for well-established and new applications such as power peak shaving, electric vehicles, integration of renewable energies, etc. Distributed Generation (DG) has become increasingly more accepted since the demand for reliable and secure power systems with high power quality increases. This project presents the Distribution Generation system. The power flow is determined by controlling the amplitude and angle of displacement between the voltage produced by the DG and the grid voltage, i.e., the control variable is the same before and after the islanding mode occurs. The voltage control provides the capability to supply different kinds of loads to the DG system, such as linear, nonlinear, and motor, balanced, or unbalanced, even if the DG operates in the islanding mode. These kinds of controls are suitable for DGs operating in parallel as each of the DGs are connected to the grid through a distribution transformer (DT). Conversely, the other approaches introduced in are more effective. The operation of a distributed generation (DG) system driven by a dc-dc step-up converter and a dc-ac voltage source inverter (VSI) interfaced load/grid achievement. The simulation results are presented by using Matlab/simulink software." @default.
- W2627088004 created "2017-06-23" @default.
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- W2627088004 date "2014-11-08" @default.
- W2627088004 modified "2023-09-28" @default.
- W2627088004 title "A UNIQUE POWER CONVERTER STRATEGY BASED DISTRIBUTED GENERATION SCHEME FOR DIFFERENT LOAD CONDITIONS" @default.
- W2627088004 hasPublicationYear "2014" @default.
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