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📄 Journal Article

Solar PV Energy Generation System Interfaced to Three Phase Grid With Improved Power Quality

June 11, 2019 79 citations 🔒 Closed IEEE Transactions on Industrial Electronics
79
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Abstract

This paper deals with a multipurpose distributed sparse (DS) control approach for a single stage solar photovoltaic (PV) energy generation system (SPEGS). This SPEGS is interfaced here to the three phase grid at varying solar irradiance and compensating the nonlinear load tied at point of common interconnection. The SPEGS performs multitasks. It feeds the generated solar PV power to the local three phase grid. It reduces the harmonics of loads and furnished balanced currents of local three-phase grid. The SPEGS uses a solar PV array, a voltage source converter (VSC), a nonlinear load, a three phase grid, and a dc-link capacitance. In case, when the solar irradiance is not available, the proposed system works as distribution static compensator by utilizing same VSC. For extracting maximum power from the PV source, the traditional perturb and observe (P&O) scheme is utilized here. The tracking performance and efficiency of P&O technique are also examined here at rapid changing climatic conditions to show the behavior of the P&O scheme. The DS control approach is capable to estimate required fundamental component to find out reference grid currents. The proposed control approach is validated on a developed prototype in the laboratory.

Publication Details
TypeJournal Article
PublishedJune 11, 2019
Source IEEE Transactions on Industrial Electronics
PublisherInstitute of Electrical and Electronics Engineers
Volume/Issue Vol. 67 , Issue 5 , pp. 3798-3808
DOI 10.1109/tie.2019.2921278
OpenAlex ID W2949713314
Open AccessClosed Access
Sustainable Development Goals
7 7