Control Strategy for Three Phase Grid Connected PV Inverters Enabling Current Limitation under Unbalanced Faults

V. Sai Srinivas, Y . Peraiah

Abstract


Power quality and voltage control are among the most important aspects of the grid-connected power converter operation under faults. Non-sinusoidal current is injected during unbalanced voltage sag and active or/and reactive power includes double frequency content. This paper introduces a new Fuzzy Logic Controller based control approach to mitigate the double grid frequency oscillations in the active power and dc-link voltage of the two-stage three-phase grid-connected Photovoltaic (PV) inverters during unbalanced faults. With the Fuzzy Controller control method, PV inverter injects sinusoidal currents under unbalanced grid faults. In addition, an efficient and easy-to-implement current limitation method is introduced, which can effectively limit the injected currents to the rated value during faults. In this case, the fault-ride-through operation is ensured and it will not trigger the over current protection. A Non-MPPT operation mode is proposed for the dc-dc converter. The mode is enabled under severe faults, when the converter cannot handle the maximum PV power. Finally simulated validation is provided by implementing method at Matlab/Simulink environment and analyses the performance of the complete system with including PV inverter.


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