IEEE Transactions on Industrial Electronics · 2017 · 254 citations · 30 references
Power quality and voltage control are critical for grid‑connected converters during faults, where unbalanced voltage sags inject non‑sinusoidal currents and double‑frequency components into active and reactive power. The study proposes a novel control strategy to suppress double‑grid‑frequency oscillations in active power and dc‑link voltage of two‑stage three‑phase PV inverters under unbalanced faults. The method injects sinusoidal currents under unbalanced faults, limits injected currents to rated values via an easy‑to‑implement current‑limitation scheme, employs a non‑MPPT mode for the dc‑dc converter during severe faults, and is validated experimentally on a 2‑kW PV inverter. The approach guarantees fault‑ride‑through without tripping overcurrent protection.
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 novel control strategy 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 proposed 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 overcurrent 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, experimental validation is provided by implementing the method in an experimental setup including a 2-kW PV inverter.
30
Grid Code, high and extra high voltage
E.on Netz · Medical Entomology and Zoology · 2006 · 577 citations
Overview of recent grid codes for wind power integration
Müfit Altin, Ömer Göksu, Remus Teodorescu et al. · 2010 · 393 citations · Full text