• 대한전기학회
Mobile QR Code QR CODE : The Transactions of the Korean Institute of Electrical Engineers
  • COPE
  • kcse
  • 한국과학기술단체총연합회
  • 한국학술지인용색인
  • Scopus
  • crossref
  • orcid

References

1 
Q. Hu, R. Han, X. Quan, Z. Wu, C. Tang, and W. Li, “Grid-forming inverter enabled virtual power plants with inertia support capability,” IEEE Transactions on Smart Grid, vol. 13, no. 5, pp. 4134-4143, Sep, 2022.DOI
2 
Y. Lin, J. H. Eto, B. B. Johnson, J. D. Flicker, R. H. Lasseter, H. N. V. Pico, G.-S. Seo, B. J. Pierre, and A. Ellis, “Research roadmap on grid forming inverters,” Nat. Renew. Energy Lab. (NREL), Golden, CO, USA, Tech. Rep. NREL/TP-5D00-73476, 2020.DOI
3 
J. Liu, Y. Miura, and T. Ise, “Comparison of dynamic characteristics between virtual synchronous generator and droop Control in inverter-based distributed generators,” IEEE Transactions on Power Electronics, vol. 31, no. 5, pp. 3600–3611, May, 2016.DOI
4 
J. Song, M. Cheah-Mane, E. Prieto-Araujo, and O. Gomis-Bellmunt, “Short-circuit analysis of AC distribution systems dominated by voltage source converters considering converter limitations,” IEEE Transactions on Smart Grid, vol. 13, no. 5, pp. 3867–3878, Sep, 2022DOI
5 
G. S. Seo, I. Subotic, B. Johnson, D. Groß, and F. Dörfler E, “Dispatchable virtual oscillator control for decentralized inverter-dominated power systems : analysis and experiments,” IEEE Conference on Applied Power Electronics Conference and Exposition(APEC), March, 2019.DOI
6 
X. Quan, A. Q. Huang, and H. Yu, “A novel order reduced synchronous power control for grid-forming inverters,” IEEE Transactions on Industrial Electronics, vol. 67, no. 12, pp. 10989–10995, Dec, 2020.DOI
7 
J. L. Rodríguez-Amenedo, and S. A. Gómez, “Damping low-frequency oscillations in power systems using grid-forming converters,” IEEE Access, vol. 9, pp. 158984-158997, Nov, 2021.DOI
8 
R. W. Kenyon, A. Sajadi, M. Bossart, A. Hoke, and B. M. Hodge, “Interactive power to frequency dynamics between grid-forming inverters and synchronous generators in power electronics-dominated power systems,” IEEE Systems Journal, pp. 1-12, April, 2023.DOI
9 
R. Rosso, X. Wang, M. Liserre, X. Lu, and S. Engelken, “Grid-forming converters : control approaches, grid-synchronization, and future trends – a reivew,” IEEE Open Journal of Industry Applications, no. 2, pp. 93-109, April. 2021.DOI
10 
R. Musca, Antony Vasile, and Gaetano Zizzo. “Grid-forming converters. A critical review of pilot projects and demonstrators,” Renewable and Sustainable Energy Reviews 165 (2022): 112551.DOI
11 
T. Prevost, Y. Vernay, C. Cardozo, G. Denis, Y. Zuo, A. Zecchino, Z. Yuan, R. Cherkaoui, M. Paolone, M. Zubiaga and J. J. Valera. Deliverable 3.2: Overall Specifications of the Demonstrations. Osmose WP3 : Grid forming for the synchronisation of large power systems by multi-service hybrid storage, 2019.URL
12 
S. M. Kim, Y. Y. Shin, J. S. Kang, J. M. Moon, S. J. Kim, and K. Hur, “Frequency regulation by grid forming ESS in jeju power system with high penetration of renewable energy,” 2022 Summer Conference on The Korean Institute of Electrical Engineers, pp. 114-115, July, 2022.URL
13 
S. J. Kim, J. S. Kang, and K. Hur, “Stabilizing inverter-based power system using grid-forming inverter and synchronous condenser,” 2022 Fall Conference on The Korean Institute of Electrical Engineers, pp. 233-234, Oct, 2022.URL
14 
D. H. Kim, J. S. Jang, J. Hur, S. M. Jung, and M. H. Yoon, “Black start and grid synchronization effect study on GFM IBR-based power system,” The Transactions of the Korean Institute of Electrical Engineers, vol. 72, no. 3, pp. 349-355, 2023.DOI
15 
S. H. Kim, J. S. Kang, and K. Hur, “A study on evaluaton of optimal ESS-GFM location and capacity for Jeju island black start simulation,” 2021 Spring Conference on The Korean Institute of Electrical Engineers, pp. 255-256, April, 2021.URL
16 
W. Du, F. K. Tuffner, K. P. Schneider, R. H. Lassester, J. Xie, Z. Chen, and B. Bhattarai, “Modeling of grid-forming and grid-following inverters for dynamic simulation of large-scale distribution systems,” IEEE Transactions on Power Delivery, vol. 36, no. 4, pp. 2035-2045, Aug, 2021.DOI
17 
D. B. Rathnayake, M. Akrami, C. Phurailatpam, S. P. Me, S. Hadavi, G. Jayasinghe, S. Zabihi, and B. Bahrani, “Grid forming inverter modeling, control, and application,” IEEE Access, vol. 9, pp. 114781-114807, Aug, 2021.DOI
18 
T. Qoria, E. Rokrok, A. Bruyere, B. Francois, and X. Guillaud, “A PLL-free grid-forming control with decoupled functionalities for high-power transmission system applications,” IEEE Access., vol. 8, pp. 197363-197378, Oct. 2023.DOI
19 
Y. Mitsugi, and J. Baba, “Phaser-based transfer function analysis of power synchronization control instability for grid forming inverter in a stiff grid,” IEEE Access., vol. 11, pp. 42146-42159, May 2023.DOI
20 
“10th Base Planning Electricity Supply and Demand (2022-2036),” Ministry of Trade, Industry and Energy, Jan, 2023.URL
21 
“Fast frequency response concepts and bulk power system reliability needs,” NERC 2020, North American Electric Reliability Corporation.URL