International Journal of Advances in Electrical Engineering
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P-ISSN: 2708-4574, E-ISSN: 2708-4582

International Journal of Advances in Electrical Engineering


2024, Vol. 5, Issue 2, Part A
Design a grid-connected wind turbine system to feed active and reactive power to electrical load


Author(s): Imad Abdul-Rida Hameed, Jabbar S Hussein and Ali A Altahir

Abstract: Optimal allocation, and robust control of generating units are essential to examine in a smart grid as the environment requires close. Researchers have paid much attention to wind energy systems in the past ten years. Utilizing renewable energy sources and micro-grids are efficient strategies for growing the reliability of a distribution system. In this study, grid utilities are simulated as a wind turbine power system with maximum power extraction, i.e., 3MW at 11 m/s wind speed and 2MW at six m/s wind speed. The renewable power system can supply a three-phase load, such as 2.5 MW. The proposed method was modeled and designed to simulate, analyze, and investigate its performance in the MATLAB Simulink environment. The SCADA system method numerically verifies load sharing for a triple-bus ring distribution network. The mathematical and simulation results demonstrate the efficient designed wind system's capacity to share load with the electrical grid. It has been concluded from this study that injecting the active and reactive with a power factor of 0.85 is required to maintain the system's stability. An increase in the reactive power was observed in the wind generator's load and the network to regulate the voltage in the transmission line.

Pages: 06-15 | Views: 455 | Downloads: 229

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International Journal of Advances in Electrical Engineering
How to cite this article:
Imad Abdul-Rida Hameed, Jabbar S Hussein, Ali A Altahir. Design a grid-connected wind turbine system to feed active and reactive power to electrical load. Int J Adv Electr Eng 2024;5(2):06-15.
International Journal of Advances in Electrical Engineering
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