Design of a Microgrid Transition Controller II: System Recovery Under Abnormal Conditions

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This paper presents a microgrid transition controller for managing emergency operation when the microgrid experiences a system blackout caused by an internal or external fault. The developed transition controller consists of various application function blocks, including normal operation, emergency operation, and coordination between them. The developed microgrid transition controller is validated by a sample microgrid, and two test cases are investigated: islanded black start and grid-connected black start. The simulation results demonstrate the feasibility and effectiveness of the proposed microgrid transition controller for handling emergency operation and transitioning to normal operation.

Citation Formats

TY - DATA AB - This paper presents a microgrid transition controller for managing emergency operation when the microgrid experiences a system blackout caused by an internal or external fault. The developed transition controller consists of various application function blocks, including normal operation, emergency operation, and coordination between them. The developed microgrid transition controller is validated by a sample microgrid, and two test cases are investigated: islanded black start and grid-connected black start. The simulation results demonstrate the feasibility and effectiveness of the proposed microgrid transition controller for handling emergency operation and transitioning to normal operation. AU - Wang, Jing A2 - Pratt, Annabelle A3 - Baggu, Murali DB - C-MIX - Community Microgrid Information Exchange DP - Open EI | National Laboratory of the Rockies DO - 10.1109/PESGM.2018.8585809 KW - Battery energy storage KW - Power electronics and inverters KW - Power electronics KW - Inverters KW - Solar KW - Photovoltaics KW - PV KW - Diesel generators KW - Other liquid-fuel generators KW - Power plant controls KW - SCADA KW - Maintenance and operations KW - Operations KW - Maintenance KW - Commissioning KW - Planning and design KW - Planning KW - Design KW - Case studies KW - Performance LA - English DA - 2018/01/01 PY - 2018 PB - NLR T1 - Design of a Microgrid Transition Controller II: System Recovery Under Abnormal Conditions UR - https://doi.org/10.1109/PESGM.2018.8585809 ER -
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Wang, Jing, et al. Design of a Microgrid Transition Controller II: System Recovery Under Abnormal Conditions. NLR, 1 January, 2018, C-MIX - Community Microgrid Information Exchange. https://doi.org/10.1109/PESGM.2018.8585809.
Wang, J., Pratt, A., & Baggu, M. (2018). Design of a Microgrid Transition Controller II: System Recovery Under Abnormal Conditions. [Data set]. C-MIX - Community Microgrid Information Exchange. NLR. https://doi.org/10.1109/PESGM.2018.8585809
Wang, Jing, Annabelle Pratt, and Murali Baggu. Design of a Microgrid Transition Controller II: System Recovery Under Abnormal Conditions. NLR, January, 1, 2018. Distributed by C-MIX - Community Microgrid Information Exchange. https://doi.org/10.1109/PESGM.2018.8585809
@misc{CMIX_Dataset_68, title = {Design of a Microgrid Transition Controller II: System Recovery Under Abnormal Conditions}, author = {Wang, Jing and Pratt, Annabelle and Baggu, Murali }, abstractNote = {This paper presents a microgrid transition controller for managing emergency operation when the microgrid experiences a system blackout caused by an internal or external fault. The developed transition controller consists of various application function blocks, including normal operation, emergency operation, and coordination between them. The developed microgrid transition controller is validated by a sample microgrid, and two test cases are investigated: islanded black start and grid-connected black start. The simulation results demonstrate the feasibility and effectiveness of the proposed microgrid transition controller for handling emergency operation and transitioning to normal operation.}, url = {https://cmix.openei.org/submissions/68}, year = {2018}, howpublished = {C-MIX - Community Microgrid Information Exchange, NLR, https://doi.org/10.1109/PESGM.2018.8585809}, note = {Accessed: 2026-08-06}, doi = {10.1109/PESGM.2018.8585809} }
https://dx.doi.org/10.1109/PESGM.2018.8585809

Details

Data from Jan 1, 2018

Last updated Mar 30, 2026

Submitted Jun 2, 2026

Organization

NLR

Contact

Jing Wang

Authors

Jing Wang

NLR

Annabelle Pratt

NLR

Murali Baggu

NLR
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