Peningkatan Akurasi Perhitungan IEEE C37.114 Double Ended Dengan Metode Selective Mode

Authors

  • Nidya Ayu Gusti Anggreani Universitas Pembangunan Panca Budi
  • Hamdani Hamdani Universitas Pembangunan Panca Budi
  • Reza Juliangga Universitas Pembangunan Panca Budi

DOI:

https://doi.org/10.55606/jurritek.v5i1.7202

Keywords:

Accelerate, Double Ended, Fault Locator, Mode, Selective

Abstract

Rapid and precise handling in determining fault locations is essential to accelerate post-fault recovery and minimize economic losses caused by power outages. Several methods employed to identify fault locations include Single Ended and Double Ended analysis. This paper discusses the Selective Mode Double Ended Fault Locator Method, an enhancement of the IEEE C37.114 Double Ended method. This approach involves selecting maximum fault data values for Near Side (NS) and Far Side (FS) calculations, taking into account the differential or angle difference of the sequence between the two sides. The Double Ended calculation results from the total sample values are used to determine the mode, which serves as the final output of this Fault Locator method. This method is designed to identify faults and their locations with high accuracy and speed. Based on the research findings, the Selective Mode Double Ended (SMDE) method provides more accurate fault locator analysis compared to the Single Ended and Double Ended methods. The accuracy achieved with the Single Ended method is 90.9%, with the Double Ended method reaching 94.9%, and with the Selective Mode Double Ended (SMDE) method achieving 99.9%.

Downloads

Download data is not yet available.

References

Adekayanti, Y., Adiasa, I., & Mashabai, I. (2021). Analisis Gangguan Pada kWh Meter Pelanggan di PT.PLN (Persero) UP3 Sumbawa Menggunakan Fishbone dan PDCA (Plan, Do, Check, Action). Jurnal Industri & Teknologi Samawa, 2(1), 22-31. From http://doi.org/10.36761/jitsa.v2i1.1020

https://doi.org/10.36761/jitsa.v2i1.1020

Afrizal, M., Anisah, S., & Wibowo, P. (2025). Over Current Relay Protection System Coordination Analysis and Ground Fault Relay on 20 KV Feeder Substation at Muara Tebo Substation. International Conference of Digital Sciences and Engineering Technology (pp. 131-147). Universitas Pembangunan Panca Budi. From https://proceeding.pancabudi.ac.id/index.php/ICDSET/article/view/386

Agustina, G., Anisah, S., & Tarigan, A. S. (2025). Analisa Hasil Pemeliharaan Shutdown Testing Dengan Alat Uji Omicron CMC 356 Pada Relay Distance Bay Line 150kV Jantho di GI Sigli. JESCE: Journal of Electrical and System Control Engineering, 8(2), 271-279. From https://doi.org/10.31289/jesce.v6i2.8198

https://doi.org/10.31289/jesce.v6i2.8198

Aminifar, F., Abedini, M., Amraee, T., Jafarian, P., Samimi, M. H., & Shahidehpour, M. (2021). A Review of Power System Protection and Asset Management With Machine Learning Techniques. Energy System, 13(7). From http://doi.org/10.1007/s12667-021-00448-6

https://doi.org/10.1007/s12667-021-00448-6

Andrianto, B. P., Fathurrohman, M. Y., & Permatasari, P. D. (2023). Semudah Itu (Segera Temukan Daerah Titik Gangguan). Forum Proteksi Nasional (pp. 1-4). PT.PLN (Persero).

Baharozu, E., Ilhan, S., & Soykan, G. (2023). High Impedance Fault Localization: A Comprehensive Review. Electric Power System Research, 214(A), 1-11. From https://doi.org/10.1016/j.epsr.2022.108892

https://doi.org/10.1016/j.epsr.2022.108892

Corton, D. L., Melado, J. V., Cruz, J., Kirby, R., Korkmaz, Y. Z., Pati, G., & Smelich, G. (2022). Field Experience Using Double-Ended Traveling-Wave Fault Locating Without Relay-to-Relay Communications. 16th International Conference on Developments in Power System Protection Hybrid Format. IEEE Xplore. From http://doi.org/10.1049/icp.2022.0928

https://doi.org/10.1049/icp.2022.0928

D, N. O., Zubic, S., A, S. V., & N, P. A. (2022). Economical Setting-Free Double-Ended Fault Locator for Transmission Lines: Experiences From Recent Pilot Installations. IEEE Access, 10, 96805-96820. From https://doi.org/10.1109/ACCESS.2022.3205020

https://doi.org/10.1109/ACCESS.2022.3205020

Hoq, M. T., Wang, J., & Taylor, N. (2021). Review of Recent Developments in Distance Protection of Series Capacitor Compensated Lines. Electric Power System Research, 190(106831), 1-8. From https://doi.org/10.1016/j.epsr.2020.106831

https://doi.org/10.1016/j.epsr.2020.106831

Jahanger, H. K., Thomas, D. W., & Sumner, M. (2023). An Investigation Into The Robustness of A Double-Ended Wideband Impedance-Based Fault Location Technique. Scientific Reports, 13(10001), 1-15. From https://doi.org/10.1038/s41598-023-36541-2

https://doi.org/10.1038/s41598-023-36541-2

Jahanger, H., Robson, S., Haddad, A., & Sumner, M. (2024). Double-Ended Fault Location Method with Reduced Measurements. Cardiff University Engineering Research Conference 2023 (pp. 153-157). Cardiff University Press. From http:/doi.org/10.18573/conf1.a

https://doi.org/10.18573/conf1.ai

Li, B., Shi, L., Wen, W., Li, B., Chen, X., & Su, J. (2021). Research On a New Single-End Fault Location Method for Single-Phase Grounding Faults of Transmission Lines Through Transition Resistance. Frontiers in Energy Research, 9(772345), 1-8. From http://doi.org/10.3389/fenrg.2021.772345

https://doi.org/10.3389/fenrg.2021.772345

Makki, A., Rothweiler, M., Orndorff, R., & Starling, J. B. (2013). Double Ended Fault Location Application Using IEEE Standard C37.114. Georgia Tech Fault & Disturbance Analysis Conference (pp. 1-10). Softstuf Inc.

Nasution, M. A., Anisah, S., & Alam, H. (2024). Analisis Kinerja Relai Distance Sebagai Penghantar 150kV GI Paya Geli. Journal of Information Technology and Computer Science (INTECOMS), 7(1), 260-267. From https://doi.org/10.31539/intecoms.v7i1.9437

https://doi.org/10.31539/intecoms.v7i1.9437

Ozdemir, O., Koker, R., & Pamuk, N. (2025). Fault Classification and Precise Fault Location Detection in 400kV High-Voltage Power Transmission Lines Using Machine Learning Algorithms. Processes MDPI, 13(527), 1-20. From https://doi.org/10.3390/pr13020527

https://doi.org/10.3390/pr13020527

P, R. V., Subathra, M. S., George, S. T., Peter, G., Stonier, A. A., N, S., . . . Ganji, V. (2025). High-Impedance Fault Detection in Electric Power Distribution Network Using Local Pattern Transformation Methods and Bidirectional Long Short-Term Memory. Journal of Electrical and Computer Engineering, 2025(1), 1-14. From https://doi.org/10.1155/jece/3310174

https://doi.org/10.1155/jece/3310174

R.L.A, R., F.V, L., W.L.A, N., D, F., C.M.S, R., & G.A, C. (2021). An Improved Single-Ended Correlation-Based Fault Location Technique Using Traveling Waves. International Journal of Electrical Power and Energy System, 132, 1-10. From https://doi.org/10.1016/j.ijepes.2021.107167

https://doi.org/10.1016/j.ijepes.2021.107167

Ridho, M., Siagian, P., & Tharo, Z. (2024). Analisis Frekuensi Gangguan Terhadap Kinerja Sistem Proteksi Gardu Induk 150kV Siempat Rube. JITET (Jurnal Informatika dan Teknik Elektro Terapan), 12(3), 4345-4353. From https://doi.org/10.23960/jitet.v12i3S1.5321

https://doi.org/10.23960/jitet.v12i3S1.5321

Samal, S., & Samantaray, S. R. (2024). A Novel Sequence Component Based Fault Detection Index For Microgrid Protection. Electric Power System Research, 232(1), 1-13. From https://doi.org/10.1016/j.epsr.2024.110380

https://doi.org/10.1016/j.epsr.2024.110380

Tharo, Z., Syahputra, M. R., Hamdani, & Sugiono, B. (2020). Analisis Sistem Proteksi Jaringan Tegangan Menengah Menggunakan Aplikasi Etap di Bandar Udara Internasional Kualanamu. Journal of Electrical and System Control Engineering, 4(1). From http://doi.org/10.31289/jesce.v4i1.3979

Zimmerman, K., & Costello, D. (2006). Impedance-Based Fault Location Experience. IEEE Rural Electric Power Conference (pp. 1-16). IEEE. From https://doi.org/10.1109/REPCON.2006.1649060

https://doi.org/10.1109/REPCON.2006.1649060

Downloads

Published

2025-11-11

How to Cite

Nidya Ayu Gusti Anggreani, Hamdani Hamdani, & Reza Juliangga. (2025). Peningkatan Akurasi Perhitungan IEEE C37.114 Double Ended Dengan Metode Selective Mode. JURAL RISET RUMPUN ILMU TEKNIK, 5(1), 55–75. https://doi.org/10.55606/jurritek.v5i1.7202

Similar Articles

1 2 > >> 

You may also start an advanced similarity search for this article.