• 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. Bahmanyar, S. Jamali, Apr 2017, A comparison framework for distribution system outage and fault location methods, Elect. Power Syst. Res., Vol. 145, pp. 19-34DOI
2 
A. J. Urdaneta, L. G. Pérez, J. F. Gómez, B. Feijoo, M. González, Nov 2001, Presolve analysis and interior point solutions of the linear programming coordination problem of directional overcurrent relays, Int. J. Electr.Power Energy Syst., Vol. 23, No. 8, pp. 819-825DOI
3 
D. S. Alkaran, M. R. Vatani, M. J. Sanjari, G. B. Gharehpetian, A. H. Yatim, Apr 2015, Overcurrent relays coordination in interconnected networks using accurate analytical method and based on determination of fault critical point, IEEE Trans. Power Del., Vol. 30, No. 2, pp. 870-877DOI
4 
C. A. C. Salazar, A. C. Enríquez, S. E. Schaeffer, May 2015, Directional overcurrent relay coordination considering non- standardized time curves, Electr. Power Syst. Res., Vol. 122, pp. 42-49DOI
5 
H. M. Sharaf, H. H. Zeineldin, D. K. Ibrahim, E. L. Essam, 2006, A proposed coordination strategy for meshed distribution systems with DG considering user-defined characteristics of directional inverse time overcurrent relays, Int. J. Electr. Power Energy Syst, Vol. 65, pp. 49-58DOI
6 
H. Nikkhajoei, R. H. Lasseter, 2006, Microgrid fault protection based on symmetrical and differential current components, Power Syst. Eng. Res.Center, Vol. 1, pp. 71-74Google Search
7 
T. Selim Ustun, C. Ozansoy, A. Zayegh, Apr 2013, Differential protection of microgrids with central protection unit support, in Proc. IEEE Tencon Spring, pp. 15-19DOI
8 
Seung Ho Hyun, Seok Jun Kang, 2021, A Model-Based Ground Fault Location Method for Distribution Systems with Distributed Energy Resources., The transactions of The Korean Institute of Electrical Engineers, Vol. 70, No. 8, pp. 1129-1138Google Search
9 
K. Jia, T. Bi, Z. Ren, D. W. P. Thomas, M. Sumner, Mar 2018, High frequency impedance based fault location in distribution system with DGs, IEEE Trans. Smart Grid, Vol. 9, No. 2, pp. 807-816DOI
10 
R. Dashti, J. Sadeh, Oct 2013, Applying dynamic load estimation and distributed-parameter line model to enhance the accuracy of impedance based fault-location methods for power distribution networks, Elect. Power Compon. Syst., Vol. 41, No. 14, pp. 1334-1362DOI
11 
R. Dashti, J. Sadeh, Aug 2014, Fault section estimation in power distribution network using impedance-based fault distance calculation and frequency spectrum analysis, IET Gener. Transm. Distrib., Vol. 8, No. 8, pp. 1406-1417DOI
12 
R. Dashti, S. Salehizadeh, H. Shaker, M. Tahavori, Jun 2018, Fault location in double circuit medium power distribution networks using an impedance based method, Appl. Sci., Vol. 8, No. 7, pp. 1034DOI
13 
R. Dashti, M. Daisy, H. R. Shaker, M. Tahavori, 2017, Impedance-based fault location method for four-wire power distribution networks, IEEE Access, Vol. 6, pp. 1342-1349DOI
14 
X. Li, A. Dyśko, G. M. Burt, Sep 2014, Traveling wave-based protection scheme for inverter-dominated microgrid using mathematical morphology, IEEE Trans. Smart Grid, Vol. 5, No. 5, pp. 2211-2218DOI
15 
N. Davydova, G. Hug, Oct 2018, Travelling wave protection with disturbance classification for distribution grids with distributed generation, J. Eng., Vol. 2018, No. 15, pp. 830-835DOI
16 
M. Mallaki, R. Dashti, Jan 2012, Fault locating in transmission networks using transient voltage data, Energy Procedia, Vol. 14, pp. 173-180DOI
17 
G. Bayrak, Nov 2018, Wavelet transform-based fault detection method for hydrogen energy-based distributed generators, Int. J. Hydrogen Energy, Vol. 43, No. 44, pp. 20293-20308DOI
18 
S. Som, S. R. Samantaray, Dec 2017, Wavelet based fast fault detection in LVDC micro-grid, in Proc. 7th Int. Conf. Power Syst. (ICPS), pp. 87-92DOI
19 
R. Kumar, D. Saxena, May 2018, A traveling wave based method for fault location in multi-lateral distribution network with DG, in Proc. IEEE Innov. Smart Grid Technol. (ISGT Asia), pp. 7-12DOI
20 
R. Haider, C. H. Kim, T. Ghanbari, S. B. A. Bukhari, M. S. U. Zaman, S. Baloch, Y. S. Oh, Feb 2018, Passive islanding detection scheme based on autocorrelation function of modal current envelope for photovoltaic units, IET Gener., Transmiss. Distrib., Vol. 12, No. 3, pp. 726-736DOI
21 
G. Vyshnavi, A. Prasad, Sep 2018, High impedance fault detection using fuzzy logic technique, Int. J. Grid Distrib. Comput., Vol. 11, No. 9, pp. 13-22Google Search
22 
M. Dehghani, M. H. Khooban, T. Niknam, 2016, Fast fault detection and classification based on a combination of wavelet singular entropy theory and fuzzy logic in distribution lines in the presence of distributed generations, Int. J. Electr. Power Energy Syst., Vol. 78, pp. 455-462DOI
23 
J. O. C. P. Pinto, M. Moreto, jan. 2021, Protection strategy for fault detection in inverter-dominated low voltage AC microgrid, Electr. Power Syst. Res., Vol. 190, No. art. no. 106572.DOI
24 
I. Kiaei, S. Lotfifard, Jan 2020, Fault section identification in smart distribution systems using multi-source data based on fuzzy petri nets, IEEE Trans. Smart Grid, Vol. 11, No. 1, pp. 74-83DOI
25 
Y. Du, Aug 2019, Single line-to-ground faulted line detection of distribution systems with resonant grounding based on feature fusion framework, IEEE Trans. Power Del., Vol. 34, No. 4, pp. 1766-1775DOI
26 
Z. Tong, May 2018, Fault diagnosis and location method for active distribution network based on artificial neural network, Elect. Power Compon. Syst., Vol. 46, No. 9, pp. 985-996DOI
27 
R. Eslami, S. H. H. Sadeghi, H. A. Abyaneh, Oct 2017, A probabilistic approach for the evaluation of fault detection schemes in microgrids, Eng., Technol. Appl. Sci. Res., Vol. 7, No. 5, pp. 1967-1973DOI
28 
E. M. Amiri, B. Vahidi, , Integrated protection scheme for both operation modes of microgrid using S-transform, Int. J. Electr. Power Energy Syst., Vol. 121, No. 106051DOI
29 
M. Manohar, E. Koley, S. Ghosh, Dec 2017, A reliable fault detection and classification scheme based on wavelet transform and ensemble of SVM for microgrid protection, in Proc. 3rd Int. Conf. Appl. Theor. Comput. Commun. Technol. (iCATccT), pp. 24-28DOI
30 
M. S. H. Lipu, M. A. Hannan, A. Hussain, A. Ayob, M. H. M. Saad, T. F. Karim, D. N. T. How, Dec. 2020, Data-driven state of charge estimation of lithium-ion batteries: Algorithms, implementation factors, limitations and future trends, J. Cleaner Prod., Vol. 277, No. Art no 124110DOI
31 
X. Fang, S. Mirsa, G. Xue, D. Yang, 2012, SMART GRID-The New and Improved Power Grid; A Survey, IEEE Comm. surveys and tutorials, Vol. 14, No. 4, pp. 944-980DOI
32 
S. L. Clements, H. Kirkham, M. Elizondo, July, 2011, Protecting the Smart Grid : A Risk Based Approach, Proceedings of Power and Energy Society General MeetingDOI
33 
V. Telukunta, J. Pradhan, A. Agrawal, M. Singh, S. G. Srivani, dec. 2017, Protection Challenges under Bulk Penetration of Renewable Energy Resources in Power Systems:A Review, CSEE Journal of Power and Energy Systems, Vol. 3, No. 4, pp. 365-379DOI
34 
S. A. Abbas, april. 2013, A New Fast Algorithm to Estimate Real Time Phasor Using Adatpive Signal Processing, IEEE Trans. on Power Delivery, Vol. 28, No. 2, pp. 807-815DOI
35 
M. M. Eissa, september. 2012, Protection Technique for Complex Distribution Smart Grid Using Wireless Token Ring Protocol, IEEE Trans. on Smart Grid, Vol. 3, No. 3, pp. 1106-1118DOI
36 
Won-Wook Jung, Woo-kyu Chae, Hak-ju Lee, Song-ll Keun, 2010, Fault Study on Distribution System with Dispersed Generation., Proceedings of the KIEE Conference, pp. 453-454Google Search
37 
M. Jamil, S. K. Sharma, R. Singh, 2015, Fault detection and classification in electrical power transmission system using artificial neural network, SpringerPlus, Vol. 4, No. 1, pp. 334DOI
38 
A. Prasad, J. B. Edward, 2016, Application of wavelet technique for fault classification in transmission systems, Procedia Comput. Sci., Vol. 92, pp. 78-83DOI
39 
P. Rajaraman, N. A. Sundaravaradan, R. Meyur, M. J. B. Reddy, D. K. Mohanta, Jan/Feb 2016, Fault classification in transmission lines using wavelet multiresolution analysis, IEEE Potentials, Vol. 35, No. 1, pp. 38-44DOI
40 
B. Widrow, M. A. Lehr, Sept 1990, 30 Years of Adaptive Neural Networks: Perceptron, Madaline, and Backpropagation, Proc. IEEE, Vol. 78, No. 9, pp. 1415-1442DOI
41 
S.-J. Lee, 2004, An Intelligent and Efficient Fault Location and Diagnosis Scheme for Radial Distribution Systems, IEEE transactions on power delivery 19.2, pp. 524-532DOI