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

References

1 
A. Ipakchi, F. Albuyeh, March- April 2009, Grid of the future, in IEEE Power and Energy Magazine, Vol. 7, No. 2, pp. 52-62DOI
2 
N. Hatziargyriou, H. Asano, R. Iravani, C. Marnay, Jul-Aug 2007, Microgrids, in IEEE Power and Energy Magazine, Vol. 5, No. 4, pp. 78-94DOI
3 
S. A. Pourmousavi, M. H. Nehrir, 2012, Real-Time Central Demand Response for Primary Frequency Regulation in Microgrids, in IEEE Transactions on Smart Grid, Vol. 3, No. 4, pp. 1988-1996DOI
4 
A. Molina-García, F. Bouffard, D. S. Kirschen, feb 2011, Decen- tralized Demand-Side Contribution to Primary Frequency Control, in IEEE Transactions on Power Systems, Vol. 26, No. 1, pp. 411-419DOI
5 
R. Haider, M. S. Zaman, S. B. A. Bukhari, C. H. Kim, 2018, Analyzing the Effects of Demand Response and Virtual Inertia in the Frequency Regulation Services of a Power System, KIEE Summer Annual Conference, pp. 400-402Google Search
6 
D. Jay, K. S. Swarup, 2011, Dynamic Demand Response and control in Smart Grid Environment, 2011 Annual IEEE India Conference, hyderabad, pp. 1-4DOI
7 
M. S. Uz Zaman, R. Haider, S. B. Ali Bukhari, C. Kim, 2018, Frequency Profile Improvement of a Microgrid through Aggregated Demand Response, TENCON 2018- 2018 IEEE Region 10 Conference, Korea (south), pp. 1584-1588DOI
8 
A. Klem, K. Dehghanpour, H. Nehrir, 2017, Primary frequency regulation in islandec microgrids through droop-based generation and demand control, 2017 19th International Conference on Intelligent System Application to Power Systems (ISAP), San Antonio, TX, pp. 1-6DOI
9 
Q. Shi, F. Li, Q. Hu, Z. Wang, Jan 2018, Dynamic demand control for system frequency regulation: Concept review algorithm comparison and future vision, Elect. Power Syst. Res., Vol. 154, pp. 75-87DOI
10 
F. Sánchez, F. Gonzalez-Longatt, 2019, Optimization of Frequency Controller Parameters of a BESS by considering Rate of Change Constraints, 2019 IEEE Milan PowerTech, Milan, Italy, pp. 1-6DOI
11 
F. S. Rahman, T. Kerdphol, M. Watanabe, Y. Mitani, May 2019, Optimization of virtual inertia considering system frequency protection scheme, Electr. Power Syst. Res., Vol. 170, pp. 294-302DOI
12 
I Made Dwi Darmantara, Ho-Young Choi, Ji-Soo Kim, Chul-Hwan Kim, 2020, A Two-Stage Frequency Regulation Strategy Through Demand Response and Battery Energy Storage System on the Microgrid, KIEE Summer Annual Conference, pp. 869-870Google Search
13 
Ji-Hui Kim, Guk-Hyun Moon, Sung-Kwan Joo, Jae-Cheol Oh, 2011, Development of Demand Response Operation System for Load Aggregators, The transactions of The Korean Institute of Electrical Engineers, Vol. 60, No. 12, pp. 2221-2224DOI