77
Views
1
CrossRef citations to date
0
Altmetric
Instrumentation and measurement

Back-Up Protection Scheme for Series-Compensated Transmission Line Connected to Wind Farm

REFERENCES

  • B. Rathore, and A. G. Shaik, “Wavelet-alienation based transmission line protection scheme,” IET Gener. Transm. Distrib., Vol. 11, no. 4, pp. 995–1003, Mar. 2017.
  • L. Tang, X. Dong, S. Luo, S. Shi, and B. Wang, “A new differential protection of transmission line based on equivalent travelling wave,” IEEE Trans. Power Deliv., Vol. 32, no. 3, pp. 1359–1369, Jun. 2017.
  • M. Kavi, Y. Mishra, and M. D. Vilathgamuwa, “High-impedance fault detection and classification in power system distribution networks using morphological fault detector algorithm,” IET Gener. Transm. Distrib., Vol. 12, no. 15, pp. 3699–3710, May 2018.
  • A. Soheili, and J. Sadeh, “Evidential reasoning based approach to high impedance fault detection in power distribution systems,” IET. Gener. Transm. Distrib., Vol. 11, no. 5, pp. 1325–1336, Mar. 2017.
  • W. C. Santos, F. V. Lopes, N. S. D. Brito, and B. A. Souza, “High impedance fault identification on distribution networks,” IEEE Trans. Power Deliv., Vol. 32, no. 1, pp. 23–32, Feb. 2017.
  • M. S. Tonelli-Neto, J. G. M. S. Decanini, A. D. P. Lotufo, and C. R. Minussi, “Fuzzy based methodologies comparison for high-impedance fault diagnosis in radial distribution feeders,” IET Gener. Transm. Distrib., Vol. 11, no. 6, pp. 1557–1565, Jan. 2017.
  • F. Yu, C. Booth, A. Dysko, and Q. Hong, “Wide-area backup protection and protection performance analysis scheme using PMU data,” Int. J. Electr. Power Energy Syst., Vol. 110, pp. 630–641, Sept. 2019.
  • V. K. Gaur, and B. Bhalja, “A new faulty section identification and fault localization technique for three-terminal transmission line,” Int. J. Electr. Power Energy Syst., Vol. 93, pp. 216–227, Dec. 2017.
  • S. Didehvar, and R. M. Chabanloo, “Accurate estimating remote end equivalent impedance for adaptive one-ended fault location,” Electr. Power Syst. Res., Vol. 170, pp. 194–204, Feb. 2019.
  • A. Ghorbani, and H. Mehrjerdi, “Negative-sequence network based fault location scheme for double-circuit multi terminal transmission lines,” IEEE Trans. Power Deliv., Mar. 2019. DOI:10.1109/TPWRD.2019.2906056.
  • M. Nemati, M. Bigdeli, and A. Ghorbani, “Impedance-based fault location algorithm for double-circuit transmission lines using single-end data,” J Control Autom. Electr. Syst., Vol. 31, no. 5, pp. 1267–1277, June 2020.
  • H. Eristi, “Fault diagnosis system for series compensated transmission line based on wavelet transform and adaptive neuro-fuzzy inference system,” Measurement (Mahwah N. J.), Vol. 46, no. 1, pp. 393–401, Jan. 2013.
  • M. Mirzaei, B. Vahidi, and S. H. Hosseinian, “Fault location on a series-compensated three-terminal transmission line using deep neural network,” IET Sci. Meas. Technol., Vol. 12, no. 6, pp. 1–9, April 2018.
  • A. A. Razavi, and H. Samet, “Algorithms for fault zone detection in series-compensated transmission lines,” IET Gener. Transm. Distrib., Vol. 9, no. 4, pp. 386–394, Mar. 2015.
  • A. Swetapadma, and A. Yadav, “Improved fault location algorithm for multi-location faults, transforming faults and shunt faults in thyristor controlled series capacitor compensated transmission line,” IET Gener. Transm. Distrib., Vol. 9, no. 13, pp. 1597–1607, Oct. 2015.
  • B. Vyas, B. Das, and R. P. Maheshwari, “An improved scheme for identifying fault zone in a series compensated transmission line using undecimated wavelet transform and Chebyshev neural network,” Int. J. Electr. Power Energy Syst., Vol. 63, pp. 760–768, Dec. 2014.
  • U. J. Patel, N. G. Chothani, and P. J. Bhatt, “Sequence-space-aided SVM classifier for disturbance detection in series compensated transmission line,” IET Sci. Meas. Technol., Vol. 12, no. 8, pp. 983–993, Nov. 2018.
  • P. K. Mishra, A. Yadav, and M. Pazoki, “FDOST-based fault classification scheme for fixed series compensated transmission system,” IEEE Syst. J., Vol. 13, no. 3, pp. 3316–3325, 2019.
  • M. Mirzaei, B. Vahidi, and S. H. Hosseinian, “Accurate fault location and faulted section determination based on deep learning for a parallel-compensated three-terminal transmission line,” IET Gener. Transm. Distrib., Vol. 13, no. 13, pp. 2770–2778, May 2019.
  • H. Mehrjerdib, H. Heydaria, S. Ghanimati, and A. Ghorbania, “A pilot protection algorithm for TCSC compensated transmission line with accurate fault location capability,” Int. J. Electr. Power Energy Syst., May 2020. DOI:10.1016/j.ijepes.2020.106191.
  • H. R. S. Khoramabadi, A. Keshavarz, and R. Dashti, “A novel fault location method for compensated transmission line including UPFC using one-ended voltage and FDOST transform,” Int Trans. Electr. Energy Syst., Jan. 2020. DOI:10.1002/2050-7038.12357.
  • S. M. Hashemi, M. T. Hagh, and H. Seyedi, “A novel backup distance protection scheme for series-compensated transmission lines,” IEEE Trans. Power Deliv., Vol. 29, no. 2, pp. 699–707, Apr. 2014.
  • P. Jena, and A. K. Pradhan, “A positive-sequence directional relaying algorithm for series-compensated line,” IEEE Trans. Power Deliv., Vol. 25, no. 4, pp. 2288–2298, Oct. 2010.
  • S. Biswal, M. Biswal, and O. P. Malik, “Hilbert Huang transform based online differential relay algorithm for a shunt-compensated transmission line,” IEEE Trans. on Power Deliv., Vol. 33, no. 6, pp. 2803–2811, Dec. 2018.
  • M. Biswal, “Faulty phase selection for transmission line using integrated moving sum approach,” IET Sci. Meas. Technol., Vol. 10, no. 7, pp. 761–767, Oct. 2016.
  • B. Chatterjee, and S. Debnath, “Sequence component based approach for fault discrimination and fault location estimation in UPFC compensated transmission line,” Electr. Power Syst. Res., Vol. 180, 2020. DOI:10.1016/j.epsr.2019.106155.
  • M. Kundu, and S. Debnath, “Fault location in UPFC compensated double circuit transmission line using negative sequence current phasors,” Electr. Power Syst. Res., Vol. 184, 2020. DOI:10.1016/j.epsr.2020.106347.
  • M. Nemati, M. Bigdeli, A. Ghorbani, and H. Mehrjerdi, “Accurate fault location element for series compensated double-circuit transmission lines utilizing negative-sequence phasors,” Electric Power Syst. Res., Jan. 2021. DOI:10.1016/j.epsr.2021.107064.
  • A. Elmitwally, and A. Ghanem, “Local current-based method for fault identification and location on series capacitor-compensated transmission line with different configurations,” Int. J. Electr. Power Energy Syst., Jun. 2021. DOI:10.1016/j.ijepes.2021.107283.
  • A. Elmitwally, M. Elgamal, and A. Al-Zyoud, “A linearized MOV model-based method for fault location on off-terminal series capacitor bank-compensated transmission line using one-end current,” Electr. Power Syst. Res., May 2021. DOI:10.1016/j.epsr.2021.107400.
  • J. Ma, W. Zhang, J. Liu, and J. S. Thorp, “A novel adaptive distance protection scheme for DFIG wind farm collector lines,” Int. J. Electr. Power Energy Syst., Vol. 94, pp. 234–244, Jan. 2018.
  • M. Dehghani, M. H. Khooban, and T. Niknam, “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. 455–462, June 2016.
  • M. S. ElNozahy, R. A. El-Shatshat, and M. M. A. Salama, “Single-phasing detection and classification in distribution systems with a high penetration of distributed generation,” Electr. Power Syst. Res., Vol. 131, pp. 41–48, Feb. 2016.
  • B. Sahoo, and S. R. Samantaray, “An enhanced fault detection and location estimation method for TCSC compensated line connecting wind farm,” Int. J. Electr. Power Energy Syst., Vol. 96, pp. 432–441, Mar. 2018.
  • B. Kumar, and A. Yadav, “Backup protection scheme for transmission line compensated with UPFC during high impedance faults and dynamic situations,” IET Sci. Meas. Technol., Vol. 11, no. 6, pp. 703–712, Apr. 2017.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.