Solar Photovoltaic Power Generation System for Grid Integration Using Sparse Adoption Control Algorithm
摘要
In this research paper, a sparse adopting control algorithm is presented for the grid connected integration of a 2-stage solar energy generation system. A boost converter convert DC-DC voltage, and act as a peak power point tracker (PPPT) the Direct Current link voltage control through (PI) proportional integral control, and a second stage voltage source converter (VSC), which applied the power into the grid, make up the system’s initial phase for converting solar energy. The duty ratio of the DC-DC boost converter as determined by the P & Q algorithm. The sparse algorithm is used to manage voltage source converter switching circuit, which improves the efficiency of recognizing sparse system. The load balancing both-sides, Harmonic reduction, point of common coupling (PCC), and power factor correction (PFC) voltage regulation features of the solar power generation design are provided for various loads, including linear and non-linear. Simulink is used to simulate the design system in MATLAB, and the results are outperforming.