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Performance Evaluation of a Microgrid System with Grid-Forming and Grid-Following Inverters with Diesel Generators: Insights from Hardware Experiments

  • National Laboratory of the Rockies

Research output: Contribution to conferencePaper

Abstract

This paper presents a comprehensive performance evaluation of a microgrid system integrating grid-forming (GFM) inverters, grid-following (GFL) inverters, and a diesel generator, focusing on their interactions and behavior under various dynamic events. The study is conducted using a pure hardware setup comprising two GFM inverters, one GFL inverter, a diesel generator, load banks, a point of common coupling (PCC), and an emulated main grid. The evaluation specifically examines dynamic scenarios, including voltage jumps, phase jumps, rate of change of frequency (ROCOF), synchronization, and islanding operations, which pose critical challenges to system stability. Among all the tests conducted, the overloading and phase jump tests proved to be the most challenging. The capacity of the DC side is crucial for withstanding overloading and grid disturbance tests; otherwise, GFM inverters frequently trip due to DC undervoltage. Throughout all grid disturbance tests, the diesel generator consistently stands out as the most robust and reliable GFM unit in the system. Overall, insights from these hardware experiments shed light on the response characteristics of different generation types during grid disturbances and identify potential stability concerns in such hybrid microgrid systems.
Original languageAmerican English
Number of pages8
DOIs
StatePublished - 2025
EventIEEE ECCE 2025 - Chicago
Duration: 19 Oct 202523 Oct 2025

Conference

ConferenceIEEE ECCE 2025
CityChicago
Period19/10/2523/10/25

NLR Publication Number

  • NLR/CP-5D00-96503

Keywords

  • fault ride through
  • GFM inverter
  • grid stability
  • ROCOF

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