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Journal of the Korean Institute of Illuminating and Electrical Installation Engineers

ISO Journal TitleJ Korean Inst. IIIum. Electr. Install. Eng.

References

1 
Lee S. M., Kim J. U., 2016, The Application Method of DC Distribution in Microgrid, Journal of Energy Engineering, Vol. 25, No. issue 1, pp. 92-99DOI
2 
Kwon J. Y., Kim J. H., Kim J. S., 2018, Optimization of an Eco-Friendly Energy System for an Isolated Island considering CO2 External Cost, Journal of the Korean Society of Mineral and Energy Resources Engineers, Vol. 55, No. 4, pp. 293-306DOI
3 
Zhao B., 2018, Comparative Analysis of Multilevel-High-Frequency-Link and Multilevel-DC-Link DC-DC Transformers Based on MMC and Dual-Active Bridge for MVDC Application, IEEE Transactions on Power Electronics, Vol. 33, No. 3, pp. 2035-2049DOI
4 
Zhao S., 2021, Three-Port Bidirectional Operation Scheme of Modular-Multilevel DC-DC Converters Interconnecting MVDC and LVDC Grids, IEEE Transactions on Power Electronics, Vol. 36, No. 7DOI
5 
Javed W., Chen D., Farrag M. E., Xu Y., 2019, System Configuration, Fault Detection, Location, Isolation and Restoration: A Review on LVDC Microgrid Protections, Energies, Vol. 12, No. 6DOI
6 
Wang D., Emhemed A., Norman P., Burt G., 2017, Evaluation of Existing DC Protection Solutions on an Active LVDC Distribution Network under Different Fault Conditions, The Institution of Engineering and Technology, Vol. 2017, No. 1, pp. 1112-1116Google Search
7 
Lee H. S., Jang G. S., 2019, A Study on the Application of MVDC Technology to Expand the Hosting Capacity of Renewable Generation in Distribution System, IFAC PapersOnLine, Vol. 52, No. issue 4, pp. 482-487DOI
8 
Zhuang Y., 2022, A Multiport DC Solid-State Transformer for MVDC Integration Interface of Multiple Distributed Energy Sources and DC Loads in Distribution Network, IEEE Transactions on Power Electronics, Vol. 37, No. 2, pp. 2283-2296DOI
9 
Kheirollahi R., Zhao S., Lu F., 2022, Fault Current Bypass-Based LVDC Solid-State Circuit Breakers, IEEE Transactions on Power Electronics, Vol. 37, No. 1, pp. 7-13DOI
10 
Rodrigues R., Du Y., Antoniazzi A., Cairoli P., 2021, A Review of Solid-State Circuit Breakers, IEEE Transactions on Power Electronics, Vol. 36, No. 1, pp. 364-377DOI
11 
Choi H. W., Jung I. S., Choi H. S., 2018, Stability Improvement of DC Power System According to Applied DC Circuit Breaker Combined with Fault Current Limitation Characteristics of Superconductivity, IEEE Transactions on Applied Superconductivity, Vol. 28, No. 7DOI
12 
Park S. Y., Choi H. S., 2021, Current Limiting Characteri zation by Winding Types in Superconducting DC Circuit Breaker, IEEE Transactions on Applied Superconductivity, Vol. 31, No. 5DOI
13 
Wang M., 2019, Pole Rebalancing Methods for Pole-to-Ground Faults in Symmetrical Monopolar HVDC Grids, IEEE Transactions on Power Delivery, Vol. 34, No. 1, pp. 188-197DOI
14 
Wang S., 2021, Fast Protection Strategy for DC Transmission Line of MMC-based MT-HVDC Grid, Chinese Journal of Electrical Engineering, Vol. 7, No. 2, pp. 83-92DOI
15 
Park T.S., Kim S. H., 2019, New Fault Current Fast Shutdown Scheme for Buck Converter, Journal of IKEEE, Vol. 23, No. 1, pp. 68-73DOI
16 
Hwang S. W., Lee H. D., Tae D. H., Rho D. S., 2020, A Study on Protection Method of Energy Storage System for Lithium-ion Battery Using Surge Protection Device (SPD), JKAIS, Vol. 24, No. 4, pp. 568-574DOI
17 
Xue S., Lian J., Qi J., Fan B., 2017, Pole-to-Ground Fault Analysis and Fast Protection Scheme for HVDC Based on Overhead Transmission Lines, Energies, Vol. 10, No. 7DOI
18 
Gao Y., Bazargan M., Xu L., Liang W., 2013, DC fault analysis of MMC based HVDC system for large offshore wind farm integration, IET Renewable Power Generation Conference, Vol. Beijing, No. ChinaDOI
19 
He J., Wang K., Li J., 2021, Application of an Improved Mayr-Type Arc Model in Pyro-Breakers Utilized in Superconducting Fusion Facilities, Energies., Vol. 14, No. 14DOI
20 
Yuan L., Sun L., Wu H., 2013, Simulation of Fault Arc Using Conventional Arc Models, Energy and Power Engineering, Vol. 5, No. 4b, pp. 833-837Google Search
21 
Parizad A., Baghaee H. R., Tavakoli A., Jamali S., 2009, Optimization of Arc Models Parameter using Genetic Algorithm, International Conference on Electric Power and Energy Conversion Systems (EPECS), pp. 1-7Google Search
22 
Yeop N. S., 2021, PV Module DC Array Ground Fault Detection Area and Fault Location Detection Method, Journal of the Korean Solar Energy Society, Vol. 41, No. 5, pp. 37-45Google Search
23 
Gruhn T., Glenney J., Savostianik M., 2018, Type B Ground-Fault Protection on Adjustable Frequency Drives, IEEE Transactions on Industry Applications, Vol. 54, No. 1, pp. 934-939DOI
24 
Xu Y., Liu J., Fu Y., 2018, Fault-line Selection and Fault-type Recognition in DC Systems Based on Graph Theory, Protection and Control of Modern Power Systems, Vol. 3, No. 27DOI
25 
Park S. Y., Choi H. S., 2021, Operation Characteristics of Mechanical DC Circuit Breaker Combined with LC Divergence Oscillation Circuit for High Reliability of LVDC System, Energies, Vol. 14, No. 16DOI
26 
Xiang B., 2020, Protection Schemes using Resistive-type Superconducting Fault Current Limiters with Mechanical DC Circuit Breakers in MMC-MTDC Grids, IET Generation Transmission & Distribution, Vol. 14, No. 17, pp. 3422-3432Google Search