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DOE OSTI · 2229560

A Testing Framework for Grid-Forming Resources

Abstract

This paper presents a testing framework for grid-forming (GFM) resources. First, it analytically derives in the frequency domain the active and reactive power response of an ideal voltage source with a reactor. These transfer functions are then used to quantify the voltage source behavior expected from a GFM inverter within subtransient timescales (5-15 cycles) following a grid disturbance. The paper also shows that the testing of a GFM inverter might require a reactor of an appropriate size between the inverter and the grid simulator used for the inverter testing. Finally, the paper presents a systematic approach for developing specifications for GFM resources using active and reactive power response frequency scans. The testing framework and results presented in this paper are demonstrated using EMT-PSCAD simulations of a 1-MW GFM inverter.

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BibTeXRIS

Shah, Shahil (ORCID:0000000230532863), Yan, Weihang, Koralewicz, Przemyslaw (ORCID:0000000150040957), Gevorgian, Vahan, Ramasubramanian, Deepak, Wallen, Robb (ORCID:000000030616800X), Hoke, Anderson (ORCID:0000000267917812), Kroposki, Benjamin, Mather, Barry (ORCID:0000000342017292). 2023-09-25. A Testing Framework for Grid-Forming Resources. https://doi.org/10.1109/pesgm52003.2023.10252438

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