2023
DOI: 10.3390/en16186758
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Investigation on Tuning Power–Frequency Droop for Improved Grid–Forming Inverter and Synchronous Generator Transient Load Sharing

Jan Westman,
Ramtin Hadidi

Abstract: Poor transient load sharing has been observed during the parallel operation of synchronous generators (SGs) and droop-controlled grid-forming (GFM) inverter-based resources (IBRs) in islanded microgrids. This can result in overcurrent protections, causing the inverters to trip, which leads to the collapse of voltage and frequency. In this article, small-signal analysis supported by electromagnetic transients (EMTs) simulation is performed on a detailed model of a microgrid containing IBRs and an SG to identify… Show more

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“…The above-mentioned (V-Q) and (F-P) relationships can be quantify using the principle of the frequency-voltage droop control (FV-Control) as follows [38]:…”
Section: Bess Reactive Power Control For Voltage and Power Factor Reg...mentioning
confidence: 99%
See 1 more Smart Citation
“…The above-mentioned (V-Q) and (F-P) relationships can be quantify using the principle of the frequency-voltage droop control (FV-Control) as follows [38]:…”
Section: Bess Reactive Power Control For Voltage and Power Factor Reg...mentioning
confidence: 99%
“…It can be concluded from the shown figure that the reactive power has a direct relationship to the inverter voltage, while the active power relies mainly on the voltage phase angle (power angle). The above-mentioned (V-Q) and (F-P) relationships can be quantify using the principle of the frequency-voltage droop control (FV-Control) as follows [38]:…”
Section: Bess Reactive Power Control For Voltage and Power Factor Reg...mentioning
confidence: 99%