DOE OSTI · 1651346
Resilient Microgrid Scheduling Considering Multi-Level Load Priorities
Abstract
In this paper, we propose a novel resilient microgrid scheduling model considering the multi-level load priorities. The resiliency of the microgrid is guaranteed by quickly adjusting the output of committed local resources and shedding the loads with low priorities when the power supply from the main grid is interrupted. Considering the uncertainty of renewable energy resources and loads as well as exchanged power at PCC, the probability of successful islanding (PSI) is used to quantify the resiliency of electricity supply for various loads with different priorities. Then, the multi-level priorities are enforced through chance constrains. Results of numerical simulation validate the proposed resilient scheduling model. In addition, the impacts of resiliency requirement of loads with high priority on the resiliency of loads with low priority are analyzed as well.
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Liu, Guodong, Chinthavali, Madhu Sudhan, Stenvig, Nils, Li, Xue, Tao, Jiang, Zhang, Yichen, Tomsovic, Kevin. 2020-08-01. Resilient Microgrid Scheduling Considering Multi-Level Load Priorities. https://doi.org/10.1109/pesgm41954.2020.9282143
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