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

References

1 
Ahmed A. AbdElhafez, H. Alruways Saud, A. Alsaif Yazeed, F. Althobaiti Mutlaq, B. AlOtaibi Abdulmohsen, A. Alotaibi Naif, May 2017, Reactive power problem and solutions: an overview, Journal of Power and Energy Engineering, Vol. 5, No. 5, pp. 40-54DOI
2 
Y. -W. Liu, S. -H. Rau, C. -J. Wu, W. -J. Lee, Jan 2018, Improvement of Power Quality by Using Advanced Reactive Power Compensation, IEEE Trans. on Industry Applications, Vol. 54, No. 1, pp. 18-24DOI
3 
Jun Qi, Zhao Wenbin, Bian Xiaoyan, Oct 2020, Comparative study of SVC and STATCOM reactive power compensation for prosumer microgrids with DFIG-based wind farm integration, IEEE Access, Vol. 8, pp. 209878-209885DOI
4 
Yu-Wei Liu, Shiuan-Hau Rau, Chi-Jui Wu, Wei-Jen Lee, Aug 2017, Improvement of power quality by using advanced reactive power compensation, IEEE Trans. on Industry Applications, Vol. 54, No. 1, pp. 18-24DOI
5 
Ronita Pawn, Feb 2016, Comparative study of power system stability enhancement of various IEEE Bus System using SSSC, Int. J. Engineering Research & Technology, Vol. 5, No. 2, pp. 359-363Google Search
6 
Lei Wang, Xiaoqing Han, Chunguang Ren, Yu Yang, and Peng Wang, Mar 2017, A modified one-cycle-control-based active power filter for harmonic compensation, IEEE Trans. on Industrial Electronics, Vol. 65, No. 1, pp. 738-748DOI
7 
S. Bosch, J. Staiger, H. Steinhart, June 2018, Predictive Current Control for an Active Power Filter With LCL-Filter, in IEEE Transactions on Industrial Electronics, Vol. 65, No. 6, pp. 4943-4952DOI
8 
Y. Kim, W. Sung, B Lee, Aug 2014, Comparative Performance Analysis of High Density and Efficiency PFC Topologies, IEEE Trans. Power Electron, Vol. 29, No. 6, pp. 2666-2679DOI
9 
Ahmed H. Okilly, Jeihoon Baek, Aug 2021, Optimal Design Analysis with Simulation and Experimental Performance Investigation of High-Power Density Telecom PFC Converters, Applied Sciences, Vol. 11, No. 17, pp. 7911DOI
10 
H. Xu, D. Chen, F. Xue, X Li, Sep 2018, Optimal design method of interleaved boost PFC for improving efficiency from switching frequency, boost inductor, and output voltage, IEEE Trans. on Power Electronics, Vol. 34, No. 7, pp. 6088-6107DOI
11 
G. Aiello, M. Cacciato, S. Messina, M Torrisi, Mar 2018, A high efficiency interleaved PFC front–end converter for EV battery charger, Commun.-Sci. Lett. Univ. Zilina, Vol. 20, No. 1, pp. 86-91DOI
12 
Gauravkumar P. Prajapati, Archana G. Thosar, Arbind Kumar, 2021, Unity Power Factor Control using Interleaved Boost Converter for Induction Motor Drive, In 47th IECON Annual Conference of the IEEE Industrial Electronics Society, pp. 1-6DOI
13 
Kwang-Man Kim, Eung-Ho Kim, Jong-Woo Choi, July 2018, Control of Motor Drives Fed by PFC Circuits without DC-Link Electrolytic Capacitors, Journal of Power Electronics, Vol. 18, No. 4, pp. 1067-1074DOI
14 
Tao Jing, Alexander S. Maklakov, 2018, A review of voltage source converters for energy applications, In International Ural Conference on Green Energy (UralCon), pp. 275-281DOI
15 
Mohammad Reza Miveh, Mohd Fadli Rahmat, Ali Asghar Ghadimi, Mohd Wazir Mustafa, July 2015, Power quality improvement in autonomous microgrids using multi-functional voltage source inverters: a comprehensive review, Journal of Power Electronics, Vol. 15, No. 4, pp. 1054-1065DOI