4.8 Article

An Adaptive Fault Ride-Through Scheme for Grid-Forming Inverters Under Asymmetrical Grid Faults

期刊

IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS
卷 69, 期 12, 页码 12912-12923

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TIE.2021.3135641

关键词

Asymmetrical faults; current limiting; fault ride-through; grid-forming (GFM) inverter; three-phase four-wire (3P4W); virtual impedance

资金

  1. Research Grants Council of the Hong Kong Special Administrative Region (HKSAR) Government [R5020-18]
  2. Innovation and Technology Commission of the HKSAR Government [K-BBY1]

向作者/读者索取更多资源

This article proposes an adaptive fault ride-through scheme for three-phase four-wire grid-forming inverters. It limits overcurrent by modifying voltage references and enables seamless transition between normal and grid fault conditions through adaptive virtual sequence resistances.
Three-phase four-wire grid-forming (GFM) inverters are promising to interface distributed energy resources into low-voltage networks. However, these inverters are prone to overcurrent under grid faults. Physically increasing the inverter current capacity is not cost-effective to cope with complicated fault conditions. In this article, an adaptive fault ride-through (FRT) scheme based on instantaneous saturators and virtual negative- and zero-sequence resistances is proposed. It features not only overcurrent limitation by modifying voltage references, but also seamless transition between normal and grid fault conditions. The proposed FRT scheme is first analyzed from different aspects, including the virtual sequence resistances, grid short-circuit ratio, fault types, and fault levels. The virtual sequence resistances are then designed to be adaptive to ensure high voltage quality at the healthy phase. The proposed FRT scheme is verified by MATLAB/Simulink simulations under asymmetrical faults. A laboratory platform with a grid-connected 3kW GFM inverter is further constructed to demonstrate its effectiveness (a video of the experimental results under three asymmetrical faults is attached).

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