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Friday, April 14, 2023

Modeling, Implementation and Performance Analysis of a Grid-Connected Photovoltaic/Wind Hybrid Power System

Abstract

Modeling, Implementation and Performance Analysis of a Grid-Connected Photovoltaic/Wind Hybrid Power System Wind Hybrid System Grid-Connected PV Modeling & Analysis focuses on the dynamic modeling, design, and control strategy of a grid-connected photovoltaic (PV)/wind hybrid power system. By integrating PV stations and wind farms through a main AC-bus, the system's performance is improved. The Maximum Power Point Tracking (MPPT) technique is utilized for both PV and wind power sources to maximize the power extracted from the hybrid system, even in changing environmental conditions.

In this paragraph Using Matlab/Simulink software, the hybrid power system is modeled and simulated, and the effectiveness of the MPPT technique and control strategy is evaluated. Simulation results demonstrate the effectiveness of the MPPT technique in maximizing power extraction, and show that the hybrid power system operates at unity power factor and maintains constant grid voltage regardless of environmental conditions and injected power.

Keywords

PV; wind; hybrid system; wind turbine; DFIG; MPPT control.

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Power Quality Enhancement Using Dynamic Voltage Restorer (DVR)-Based Predictive Space Vector Transformation (PSVT) With Proportional Resonant (PR)-Controller

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