November 2023

Conference Paper

Real-Time Model-Adaptive Relaying Applied to Microgrid Protection

By:
Ferrari Maglia, Maximiliano F; Ollis, Thomas B; Sundararajan, Aditya ; Herron Jr, Andrew N; Lindsay, Isabelle O; Shepard, Neil E; Smith, Travis; Marshall, Mike; Smith, Travis; Hambrick, Joshua; Piesciorovsky, Emilio C; Sticht, Chris
Page Number:
1-5
Issue Number:
1
Book Title:
2023 IEEE Power & Energy Society Innovative Smart Grid Technologies Conference (ISGT)
Publication Date:
November 9, 2023
Publisher Location:
IEEE, New Jersey, United States of America
Conference Name:
Innovative Smart Grid Technologies Conference: ISGT 2023
Conference Location:
Washington, District of Columbia, United States of America
Conference Sponsor:
IEEE
View DOI Listing:
https://doi.org/10.1109/ISGT51731.2023.10066421

Abstract

In microgrids, the short-circuit current magnitude is significantly limited by more than an order of magnitude due to the relatively small inverter-based resources. Commercially available protective devices for distribution cannot reliably protect a microgrid due to their dependence on the magnitude of the fault current. Moreover, overcurrent relays typically cannot function properly for a microgrid because they are incapable of detecting faults and/or performing the coordination between the relays in inverter-based microgrids operated in the islanded mode. This paper proposes a model-adaptive relay designed to adjust the relay curves based on the available generation and the network topology. The proposed method runs a real-time model of the microgrid, which gathers information from the network to calculate the available short-circuit current in the specified node. The fault current from the model is then used for the adaptive algorithm to calculate the relay settings, considering coordination with the downstream fuses and upstream reclosers. This work presents the validation of the proposed method in Hardware-in-the-Loop, in a hardware testbed as well as field deployed in a real microgrid in East-Tennessee.