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

References

1 
F. Blaabjerg, R. Teodorescu, M. Liserre, A. V. Timbus, 2006, Overview of Control and Grid Synchronization for Distributed Power Generation Systems, IEEE Transactions on Industrial Electronics, Vol. 53, No. 5, pp. 1398-1409DOI
2 
F. Katiraei, M. R. Iravani, 2006, Power Management Strategies for a Microgrid With Multiple Distributed Generation Units, IEEE Transactions on Power Systems, Vol. 21, No. 4, pp. 1821-1831DOI
3 
I. Kim, 2017, Optimal distributed generation allocation for reactive power control, IET Generation, Transmission and Distribution, Vol. 11, No. 6, pp. 1549-1556DOI
4 
S. Weckx, C. Gonzalez, J. Driesen, 2014, Combined Central and Local Active and Reactive Power Control of PV Inverters, IEEE Transactions on Sustainable Energy, Vol. 5, No. 3, pp. 776-784DOI
5 
I. Kim, 2018/05/01/ 2018, Optimal capacity of storage systems and photovoltaic systems able to control reactive power using the sensitivity analysis method, Energy, Vol. 150, pp. 642-652DOI
6 
I. Kim, R. G. Harley, 2018, The transient-state effect of the reactive power control of photovoltaic systems on a distribution network, International Journal of Electrical Power & Energy Systems, Vol. 99, pp. 630-637DOI
7 
P. J. d. S. Neto, A. C. Pinto, S. B. T. A. d, E. R. Filho, pp 1699-1706, A Proposal to Control Active and Reactive Power in Distributed Generation Systems Using Small Wind Turbines, IEEE Latin America Transactions, Vol. 18, No. 10, pp. 1699-1706DOI
8 
I. Kim, R. G. Harley, 2020, Examination of the effect of the reactive power control of photovoltaic systems on electric power grids and the development of a voltage- regulation method that considers feeder impedance sensitivity, Electric Power Systems Research, Vol. 180DOI
9 
D. Lee, S. Son, I. Kim, 2021, Optimal Allocation of Large-Capacity Distributed Generation with the Volt/Var Control Capability Using Particle Swarm Optimization, Energies, Vol. 14, No. 11, pp. 3112DOI
10 
B. Kim, N. Rusetskii, H. Jo, I. Kim, 2021, The Optimal Allocation of Distributed Generators Considering Fault Current and Levelized Cost of Energy Using the Particle Swarm Optimization Method, Energies, Vol. 14, No. 2, pp. 418DOI
11 
R. C. Dugan, R. F. Arritt, J. Smith, M. Rylander, 5-7 June 2013, OpenDSS training workshop, University of North Carolina at CharlotteGoogle Search
12 
J. D. Glover, M. Sarma, T. Overbye, 2011, Power system analysis and design. Boston, Massachusetts, United States, Vol. Cengage LearningGoogle Search
13 
A. Cabrera-Tobar, E. Bullich-Massagué, M. Aragüés-Peñalba, O. Gomis-Bellmunt, 2016, Capability curve analysis of photovoltaic generation systems, Solar Energy, Vol. 140, No. supplement c, pp. 255-264DOI
14 
I. Kim, S. Xu, 2019/11/01/ 2019, Bus voltage control and optimization strategies for power flow analyses using Petri net approach, International Journal of Electrical Power & Energy Systems, Vol. 112, pp. 353-361DOI
15 
I. Dabbagchi, 2019, IEEE 30-bus system, American Electric Power System. http://www.ee.washington.edu/research/pstca/ pf30/pg_tca30bus.htm (accessed August 1DOI
16 
Working Group on a Common Format for Exchange of Solved Load Flow Data, 1973, Common format for exchange of solved load flow data, IEEE Transactions on Power Apparatus and Systems, Vol. PAS-92, No. 6, pp. 1916-1925DOI