Authors | Mostafa Rahideh, Abbas Ketabi, Abolfazl Halvaei Niasar, Iman zamani |
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Journal | AUT Journal of Electrical Engineering |
Presented by | دانشگاه کاشان |
Page number | 231-242 |
Serial number | 2 |
Volume number | 52 |
Paper Type | Full Paper |
Published At | 2020 |
Journal Grade | Scientific - research |
Journal Type | Typographic |
Journal Country | Iran, Islamic Republic Of |
Journal Index | ISC |
Abstract
This study aims to report on the application of Linear Quadratic Integral (LQI) based global maximum power point tracker (GMPPT) method for transferring the available maximum power from photovoltaic (PV) systems to load in unshaded and shaded conditions. In the proposed approach, the reference voltage at the global maximum power point (GMPP) is estimated by a new scanning algorithm. The difference between the reference voltage and the voltage of the PV array is then used by LQI controller to generate the duty cycle for a boost converter. The design process of the proposed approach is explained as step by step. The benefits of the approach are quicker tracking capability, transferring maximum deliverable power and simple implementation. To verify the proposed method, several irradiation profiles that create several peaks in the P-V curve are used. The simulation results show that the proposed method causes PV systems to track the GMPP immediately so that no oscillation around the GMPP is observed. Therefore, maximum efficiency can be derived from the PV system
tags: Photovoltaic systems, Maximum power point tracking (MPPT), Linear Quadratic Integral optimal control