KIEE
The Transactions of
the Korean Institute of Electrical Engineers
KIEE
Contact
Open Access
Monthly
ISSN : 1975-8359 (Print)
ISSN : 2287-4364 (Online)
http://www.tkiee.org/kiee
Mobile QR Code
The Transactions of the Korean Institute of Electrical Engineers
ISO Journal Title
Trans. Korean. Inst. Elect. Eng.
Main Menu
Main Menu
최근호
Current Issue
저널소개
About Journal
논문집
Journal Archive
편집위원회
Editorial Board
윤리강령
Ethics Code
논문투고안내
Instructions to Authors
연락처
Contact Info
논문투고·심사
Submission & Review
Journal Search
Home
Archive
2024-09
(Vol.73 No.09)
10.5370/KIEE.2024.73.9.1528
Journal XML
XML
PDF
INFO
REF
References
1
Lin, J. -H.; Wu, Y. -K. Review of Power System Resilience Concept, Assessment, and Enhancement Measures. Appl. Sci. 2024, 14, 1428. https://doi.org/10.3390/app14041428
2
NREL, Adapting Existing Energy Planning, Simulation, and Operational Models for Resilience Analysis, TP-6A20-74241, Feb 2020, https://www.nrel.gov/docs/fy20osti/74241.pdf
3
Jaegul Lee, “Evaluation and Management System of Resilience of Power Grid Resilience to Extreme Climate and External Impact,” The Korean Institute of Electrical Engineers Magazine, vol. 73, no. 5, May 2024.
4
Vega Penagos, C.A.; Diaz, J.L.; Rodriguez-Martinez, O.F.; Andrade, F.; Luna, A.C. Metrics and Strategies Used in Power Grid Resilience. Energies 2024, 17, 168. https://doi.org/10.3390/en17010168
5
E. Vugrin, A. Castillo, and C. Silva-Monroy, “Resilience metrics for the electric power system: A performance-based approach,” Sandia Nat. Laboratories, Albuquerque, NM, USA, Tech. Rep. SAND2017-1493, 2017.
6
M. Panteli, and P. Mancarella, “The grid: Stronger, bigger, smarter?: Presenting a conceptual framework of power system resilience,” IEEE Power Energy Mag., vol. 13, no. 3, pp. 58~66, May 2015.
7
J. Watson, R. Guttromson, and C. Silva-Monroy, “Conceptual framework for developing resilience metrics for the electricity, oil, and gas sectors in the United States,” Sandia Nat. Laboratories, Albuquerque, NM, USA, Tech. Rep. SAND2014-18019, 2014.
8
S. Mousavizadeh, M. Haghifam, and M. Shariatkhah, “A linear two-stage method for resiliency analysis in distribution systems considering renewꠓable energy and demand response resources,” Appl. Energy, vol. 211, pp. 443~460, Feb. 2018.
9
H. Zhang, Z. Bie, G. Li, and Y. Lin, “Assessment method and metrics of power system resilience after disasters,” J. Eng., vol. 2019, no. 16, pp. 880~883, 2019.
10
A. Hussain, V. -H. Bui, and H. -M. Kim, “Resilience-oriented optimal operation of networked hybrid microgrids,” IEEE Trans. Smart Grid, vol. 10, no. 1, pp. 204~215, Jan. 2019.
11
A. Hussain, A. Oulis Rousis, I. Konstantelos, G. Strbac, J. Jeon, and H. Kim, “Impact of uncertainties on resilient operation of microgrids: A data-driven approach,” IEEE Access, vol. 7, pp. 14924~14937, Jan. 2019.
12
M. Panteli, and P. Mancarella, “The grid: Stronger, bigger, smarter?: Presenting a conceptual framework of power system resilience,” IEEE Power Energy Mag., vol. 13, no. 3, pp. 58~66, May 2015.
13
M. Panteli, D. N. Trakas, P. Mancarella, and N. D. Hatziargyriou, “Power systems resilience assessment: Hardening and smart operational enhanceꠓment strategies,” Proc. IEEE, vol. 105, no. 7, pp. 1202~1213, Jul. 2017.
14
T. -H. Yoo and H. Park, “Modeling of Power System Resilience During a Catastrophic Disaster and Application of the Model,” in IEEE Access, vol. 12, pp. 81550~81566, 2024.