Araştırma Makalesi
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Design of Adaptive Distance Protection Relay for Transmission Lines Incorporating Energy Storage Systems

Yıl 2024, , 1412 - 1420, 02.12.2024
https://doi.org/10.35414/akufemubid.1470014

Öz

Integrated energy storage systems in power grids facilitate continuous energy transmission and also offer compensatory measures for reactive power in the line. This results in enhanced management of both real and reactive power within the transmission network. Nevertheless, the operation of such systems introduces additional complexities that challenge the effectiveness of conventional transmission line protection mechanisms. In this paper, we delve into the implications of simulating reactance and resistance through a storage system placed centrally in the line, evaluating its impact on the performance of distance relay protection. We explore various operational modes and control strategies for storage, assessing the feasibility of distance protection within a Matlab/Simulink simulation framework. The primary objective of this study is to ensure robust protection for compensated lines utilizing EDS, thereby optimizing the operational spectrum of transmission systems incorporating energy storage/generator integration via series compensation.

Kaynakça

  • Oymak, A., Tür, M. R. and Hossain, E., 2022. Modeling of STATCOM Connected System to Microgrid, Global Energy Conference (GEC), Batman, Turkey, 202-207, https://doi.org/10.1109/GEC55014.2022.9986624
  • Abdollahzadeh, H., Mozafari, B., and Jazaeri, M., 2015. Realistic insights into impedance seen by distance relays of a SS-compensated transmission line incorporating shunt capacitance of line. International Journal of Electrical Power & Energy Systems, 1(65), 394-407, https://doi.org/10.1016/j.ijepes.2014.10.037
  • Abidin, A. F. B., Al-Dabbagh, M., and Mohamed, A., 2008. Adaptive distance protection relays: An Overview. In Proc. Eng. Postgraduate Conf.(EPC) 1-8. Albasri, F. A., Sidhu, T. S., & Varma, R. K., 2007. Performance comparison of distance protection schemes for shunt-FACTS compensated transmission lines. IEEE transactions on Power delivery, 22(4), 2116-2125. https://doi.org/10.1109/TPWRD.2007.900283
  • Ates Y, Boynuegri AR, Uzunoglu M, Nadar A, Yumurtacı R, Erdinc O, Paterakis NG, Catalão JPS., 2016. Adaptive Protection Scheme for a Distribution System Considering Grid-Connected and Islanded Modes of Operation. Energies, 9(5), 37-38, https://doi.org/10.3390/en9050378
  • Ates, Y., Uzunoglu, M., Karakas, A., Boynuegri, A. R., Nadar, A., & Dag, B., 2016. Implementation of adaptive relay coordination in distribution systems including distributed generation. Journal of Cleaner Production, 1(12), 2697-2705. https://doi.org/10.1016/j.jclepro.2015.10.066
  • Pandey Protection Subcommittee B.S., 2014. NRPC, New Delhi Babu, K. V., Tripathy, M., & Singh, A. K., 2011. Recent techniques used in transmission line protection: a review. International Journal of Engineering, Science and Technology, 3(3), 1-8, https://doi.org/10.4314/ijest.v3i3.68416
  • Beza, M., & Bongiorno, M., 2014. An adaptive power oscillation damping controller by STATCOM with energy storage. IEEE Transactions on Power Systems, 30(1), 484-493. https://doi.org/10.1109/TPWRS.2014.2320411
  • Bilel, A., Boukadoum, A., Leulmi, S., & Boukra, T., 2018. Improving the transient stability of the mixed AC/DC networks with FACTS. Indonesian Journal of Electrical Engineering and Informatics (IJEEI), 6(4), 477-485. https://doi.org/10.52549/ijeei.v6i4.473
  • Çakmak, F., Aydoğmuş, Z., & Tür, M. R., 2023. Analysis of Open Circuit Voltage MPPT Method with Analytical Analysis with Perturb and Observe (P&O) MPPT Method in PV Systems. Electric Power Components and Systems, 1-15. https://doi.org/10.1080/15325008.2023.2296958
  • Dash, P. K., Pradhan, A. K., Panda, G., & Liew, A. C., 2000. Adaptive relay setting for flexible AC transmission systems (FACTS). IEEE Transactions on Power Delivery, 15(1), 38-43. https://doi.org/10.1109/61.847226
  • Dash, P. K., Pradhan, A. K., Panda, G., & Liew, A. C., 2000. Digital protection of power transmission lines in the presence of series connected FACTS devices. In 2000 IEEE Power Engineering Society Winter Meeting. Conference Proceedings (Cat. No. 00CH37077) 1(3), 1967-1972. https://doi.org/10.1109/PESW.2000.847655
  • Dhenuvakonda, K. R., Singh, A., Thakre, M. P., Karasani, R. R., & Naidoo, R., 2019. Adaptive digital distance relay for SS‐based double‐circuit transmission line using phasor measurement unit. International Transactions on Electrical Energy Systems, 29(4), 27-87. https://doi.org/10.1002/etep.2787
  • Gökçek, T., & Ateş, Y., 2019. Dağıtık Güç Üretiminin Şebekeye Entegrasyonu ve Olası Etkilerinin İncelenmesi. Avrupa Bilim Ve Teknoloji Dergisi, 1(15), 216-228. https://doi.org/10.31590/ejosat.521350
  • Han B, Li H, Wang G, Zeng D, Liang Y., 2018. A virtual multi-terminal current differential protection scheme for distribution networks with inverter-interfaced distributed generators. IEEE Trans Smart Grid, 9(5), 5418–5431. https://doi.org/10.1109/TSG.2017.2749450
  • Hingorani N.G. & Gyugyi L., 2011. Understanding FACTS. Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, ITth Floor, New York, NY 10016-5997.
  • Hossain, E., Tür, M. R., Padmanaban, S., Ay, S., & Khan, I., 2018. Analysis and mitigation of power quality issues in distributed generation systems using custom power devices. IEEE Access, 6(1), 16816-16833. https://doi.org/10.1109/ACCESS.2018.2814981
  • IEEE SSR working group, 1977. First benchmark model for computer simulation of subsynchronous resonance. IEEE transactions on power apparatus and systems, 96(5), 1565-1572. Jamali, S., Kazemi, A., & Shateri, H., 2008. Effects of SMES equipped UPFC on distance relay tripping characteristic. In 2008 Joint International Conference on Power System Technology and IEEE Power India Conference, 1-7. https://doi.org/10.1109/ICPST.2008.4745270
  • Kazemi, A., Jamali, S., & Shateri, H., 2008. Effects of SMES equipped SS on distance relay tripping characteristic. In 2008 IEEE/PES Transmission and Distribution Conference and Exposition, 1-6. https://doi.org/10.1109/TDC.2008.4517157
  • Kirpane, R., & Bedekar, P. P., 2016. Removal of DC offset using digital mimic filtering technique. In 2016 International Conference on Global Trends in Signal Processing, Information Computing and Communication (ICGTSPICC), 470-475. https://doi.org/10.1109/ICGTSPICC.2016.7955347
  • Liang, J., Yiqi T., Zilin Y., Enyu J., Ruiling X., Jiaming Y., Yang F., 2023. A control based protection adaptability improving strategy for transmission line with renewable energy integration, International Journal of Electrical Power & Energy Systems, 1(49), 0142-0615, https://doi.org/10.1016/j.ijepes.2023.109009
  • Liu J., Yao W., Fang J., Wen J., Cheng S., 2018. Stability analysis and energy storage-based solution of wind farm during low voltage ride through. Int J Electr Power Energy Syst, 1(1), 75–84. https://doi.org/10.1016/j.ijepes.2018.03.013
  • Miao Y., Yafang T., Yixin H., Junwei L., Guolong M., 2020. Research on the influence of double-fed fan control mode on relay protection. Power Syst Protect Control, 48(02), 180–187, https://doi.org/10.1016/j.ijepes.2023.109009
  • Mishra, S., Gupta, S., & Yadav, A., 2020. Study on factors affecting distance protection scheme of UPFC compensated transmission lines. In 2020 First International Conference on Power, Control and Computing Technologies (ICPC2T) 143-148. https://doi.org/10.1109/ICPC2T48082.2020.9071515
  • Niaki, A. M., & Amiri, I. D., 2015. The impact of shunt-FACTS devices on distance relay performance. In 2015 2nd International Conference on Knowledge-Based Engineering and Innovation (KBEI) 348-354. https://doi.org/10.1109/KBEI.2015.7436070
  • Oza, B. A., Nair, N. C., Mehta, R. P., & Makwana, V. H. 2010. Power system protection and switchgear. In Chapter-1, Introduction and Philosophy of a Protective Relaying System. Tata McGraw Hill Education Private Limited. Padiyar, K. R., 2007. FACTS controllers in power transmission and distribution. K. R. Padiyar, Department of
  • Electrical Engineering Indian Institute of Science, Bangalore-560 012, India Padiyar, K. R., & Prabhu, N., 2003. Analysis of subsynchronous resonance with three level twelve-pulse VSC based SS. In TENCON 2003. Conference on Convergent Technologies for Asia-Pacific Region 76-80. https://doi.org/10.1109/TENCON.2003.1273229
  • Paz, M. C. R., Leborgne, R. C., & Bretas, A. S., 2015. Adaptive ground distance protection for UPFC compensated transmission lines: A formulation considering the fault resistance effect. International Journal of Electrical Power & Energy Systems, 7(3), 124-131. https://doi.org/10.1016/j.ijepes.2015.04.008
  • Purohit, A., & Gohokar, V., 2019. Maloperation of distance relay under faulty conditions in presence of static synchronous series compensator. In 2019 IEEE 2nd International Conference on Power and Energy Applications (ICPEA), 66-70. https://doi.org/10.1109/ICPEA.2019.8818520
  • Rao, H. G., Prabhu, N., & Mala, R. C., 2015. Investigations on stability of a hybrid series compensated system with SS. In 2015 International Conference on Technological Advancements in Power and Energy (TAP Energy), 57-64. https://doi.org/10.1109/TAPENERGY.2015.7229593
  • Rao, H. G., Prabhu, N., & Mala, R. C., 2019. Emulated reactance and resistance by a SS incorporating energy storage device. International Journal of Electrical and Computer Engineering, 9(2), 8-40. https://doi.org/10.11591/ijece.v9i2.pp840-850
  • Rao, M. V., Sivanagaraju, S., & Suresh, C. V., 2016. Available transfer capability evaluation and enhancement using various FACTS controllers: Special focus on system security. Ain Shams Engineering Journal, 7(1), 191-207. https://doi.org/10.1016/j.asej.2015.11.006
  • Sidhu, T. S., Varma, R. K., Gangadharan, P. K., Albasri, F. A., & Ortiz, G. R., 2005. Performance of distance relays on shunt-FACTS compensated transmission lines. IEEE Transactions on Power delivery, 20(3), 1837-1845. https://doi.org/10.1109/TPWRD.2005.848641
  • Singh, M., Panigrahi, B. K., & Maheshwari, R. P., 2011. Transmission line fault detection and classification. In 2011 International Conference on Emerging Trends in Electrical and Computer Technology 15-22. https://doi.org/10.1109/ICETECT.2011.5760084
  • Stella, M., Ezra, M. A., Fathima, A. P., & Jiunn, C. K., 2016. Research on the efficacy of unified Statcom-Fuel cells in improving the transient stability of power systems. International Journal of Hydrogen Energy, 41(3), 1944-1957. https://doi.org/10.1016/j.ijhydene.2015.11.130
  • Tur, M. R. 2020. Reliability assessment of distribution power system when considering energy storage configuration technique. IEEE Access, 8(1), 77962-77971. https://doi.org/10.1109/ACCESS.2020.2990345 Zhang, I., Crow, M. L., Yang, Z., & Chen, S., 2001. The steady state characteristics of an SSSC integrated with energy storage. In 2001 IEEE Power Engineering Society Winter Meeting. Conference Proceedings (Cat. No. 01CH37194), 1311-1316. https://doi.org/10.1109/PESW.2001.917271
  • Chenghan, Z. H. O. U., Guibin, Z. O. U., Lindong, Z. A. N. G., Xuhui, W. E. N., Liangzhi, S. U. N., & Xiaogong, D. U., 2021. Novel differential protection for distribution network with inverter-interfaced distributed generations. In 2021 6th Asia Conference on Power and Electrical Engineering (ACPEE), 19-23. https://doi.org/10.1109/ACPEE51499.2021.9436957

Enerji Depolama Sistemini İçeren İletim Hattı için Uyarlanabilir Mesafe Koruması Röle Tasarımı

Yıl 2024, , 1412 - 1420, 02.12.2024
https://doi.org/10.35414/akufemubid.1470014

Öz

Enerji depolama sistemleri entegre edilmiş güç sistemleri, gerçek gücün sistemde kesintisiz enerji iletilmesine olanak tanır, ayrıca hattın reaktans kompanzasyonunu sağlamaktadır. Bu durum, iletim sisteminde gerçek ve reaktif gücün daha iyi kontrol edilmesini mümkün kılar. Ancak, bu sistemlerin çalışması, geleneksel iletim hattı korumasının doğru çalışması için ek sorunlar ortaya çıkarmaktadır. Bu makalede, hibrit seri kompanze model hat ortasına kurulu depolama sistemi tarafından simüle edilen reaktans ve direncin, uzak mesafe rölesinin performansı üzerindeki etkisinin analizi yapılmaktadır. Olası işletme modları ve depolama kontrol stratejileri ile birlikte bir inceleme gerçekleştirilerek uzak mesafe korumasının çalışma olasılığı Matlab/Simulink similasyonu test modelinde araştırılmıştır. Seri kompansasyon kullanarak enerji depolama/generatör entegrasyonunu içeren iletim sistemlerinin tamamını işletme kadranlarını kullanmasına yardımcı olacak EDS ile kompanse edilmiş hatların güvenilir korumasını sunmaktadır.

Kaynakça

  • Oymak, A., Tür, M. R. and Hossain, E., 2022. Modeling of STATCOM Connected System to Microgrid, Global Energy Conference (GEC), Batman, Turkey, 202-207, https://doi.org/10.1109/GEC55014.2022.9986624
  • Abdollahzadeh, H., Mozafari, B., and Jazaeri, M., 2015. Realistic insights into impedance seen by distance relays of a SS-compensated transmission line incorporating shunt capacitance of line. International Journal of Electrical Power & Energy Systems, 1(65), 394-407, https://doi.org/10.1016/j.ijepes.2014.10.037
  • Abidin, A. F. B., Al-Dabbagh, M., and Mohamed, A., 2008. Adaptive distance protection relays: An Overview. In Proc. Eng. Postgraduate Conf.(EPC) 1-8. Albasri, F. A., Sidhu, T. S., & Varma, R. K., 2007. Performance comparison of distance protection schemes for shunt-FACTS compensated transmission lines. IEEE transactions on Power delivery, 22(4), 2116-2125. https://doi.org/10.1109/TPWRD.2007.900283
  • Ates Y, Boynuegri AR, Uzunoglu M, Nadar A, Yumurtacı R, Erdinc O, Paterakis NG, Catalão JPS., 2016. Adaptive Protection Scheme for a Distribution System Considering Grid-Connected and Islanded Modes of Operation. Energies, 9(5), 37-38, https://doi.org/10.3390/en9050378
  • Ates, Y., Uzunoglu, M., Karakas, A., Boynuegri, A. R., Nadar, A., & Dag, B., 2016. Implementation of adaptive relay coordination in distribution systems including distributed generation. Journal of Cleaner Production, 1(12), 2697-2705. https://doi.org/10.1016/j.jclepro.2015.10.066
  • Pandey Protection Subcommittee B.S., 2014. NRPC, New Delhi Babu, K. V., Tripathy, M., & Singh, A. K., 2011. Recent techniques used in transmission line protection: a review. International Journal of Engineering, Science and Technology, 3(3), 1-8, https://doi.org/10.4314/ijest.v3i3.68416
  • Beza, M., & Bongiorno, M., 2014. An adaptive power oscillation damping controller by STATCOM with energy storage. IEEE Transactions on Power Systems, 30(1), 484-493. https://doi.org/10.1109/TPWRS.2014.2320411
  • Bilel, A., Boukadoum, A., Leulmi, S., & Boukra, T., 2018. Improving the transient stability of the mixed AC/DC networks with FACTS. Indonesian Journal of Electrical Engineering and Informatics (IJEEI), 6(4), 477-485. https://doi.org/10.52549/ijeei.v6i4.473
  • Çakmak, F., Aydoğmuş, Z., & Tür, M. R., 2023. Analysis of Open Circuit Voltage MPPT Method with Analytical Analysis with Perturb and Observe (P&O) MPPT Method in PV Systems. Electric Power Components and Systems, 1-15. https://doi.org/10.1080/15325008.2023.2296958
  • Dash, P. K., Pradhan, A. K., Panda, G., & Liew, A. C., 2000. Adaptive relay setting for flexible AC transmission systems (FACTS). IEEE Transactions on Power Delivery, 15(1), 38-43. https://doi.org/10.1109/61.847226
  • Dash, P. K., Pradhan, A. K., Panda, G., & Liew, A. C., 2000. Digital protection of power transmission lines in the presence of series connected FACTS devices. In 2000 IEEE Power Engineering Society Winter Meeting. Conference Proceedings (Cat. No. 00CH37077) 1(3), 1967-1972. https://doi.org/10.1109/PESW.2000.847655
  • Dhenuvakonda, K. R., Singh, A., Thakre, M. P., Karasani, R. R., & Naidoo, R., 2019. Adaptive digital distance relay for SS‐based double‐circuit transmission line using phasor measurement unit. International Transactions on Electrical Energy Systems, 29(4), 27-87. https://doi.org/10.1002/etep.2787
  • Gökçek, T., & Ateş, Y., 2019. Dağıtık Güç Üretiminin Şebekeye Entegrasyonu ve Olası Etkilerinin İncelenmesi. Avrupa Bilim Ve Teknoloji Dergisi, 1(15), 216-228. https://doi.org/10.31590/ejosat.521350
  • Han B, Li H, Wang G, Zeng D, Liang Y., 2018. A virtual multi-terminal current differential protection scheme for distribution networks with inverter-interfaced distributed generators. IEEE Trans Smart Grid, 9(5), 5418–5431. https://doi.org/10.1109/TSG.2017.2749450
  • Hingorani N.G. & Gyugyi L., 2011. Understanding FACTS. Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, ITth Floor, New York, NY 10016-5997.
  • Hossain, E., Tür, M. R., Padmanaban, S., Ay, S., & Khan, I., 2018. Analysis and mitigation of power quality issues in distributed generation systems using custom power devices. IEEE Access, 6(1), 16816-16833. https://doi.org/10.1109/ACCESS.2018.2814981
  • IEEE SSR working group, 1977. First benchmark model for computer simulation of subsynchronous resonance. IEEE transactions on power apparatus and systems, 96(5), 1565-1572. Jamali, S., Kazemi, A., & Shateri, H., 2008. Effects of SMES equipped UPFC on distance relay tripping characteristic. In 2008 Joint International Conference on Power System Technology and IEEE Power India Conference, 1-7. https://doi.org/10.1109/ICPST.2008.4745270
  • Kazemi, A., Jamali, S., & Shateri, H., 2008. Effects of SMES equipped SS on distance relay tripping characteristic. In 2008 IEEE/PES Transmission and Distribution Conference and Exposition, 1-6. https://doi.org/10.1109/TDC.2008.4517157
  • Kirpane, R., & Bedekar, P. P., 2016. Removal of DC offset using digital mimic filtering technique. In 2016 International Conference on Global Trends in Signal Processing, Information Computing and Communication (ICGTSPICC), 470-475. https://doi.org/10.1109/ICGTSPICC.2016.7955347
  • Liang, J., Yiqi T., Zilin Y., Enyu J., Ruiling X., Jiaming Y., Yang F., 2023. A control based protection adaptability improving strategy for transmission line with renewable energy integration, International Journal of Electrical Power & Energy Systems, 1(49), 0142-0615, https://doi.org/10.1016/j.ijepes.2023.109009
  • Liu J., Yao W., Fang J., Wen J., Cheng S., 2018. Stability analysis and energy storage-based solution of wind farm during low voltage ride through. Int J Electr Power Energy Syst, 1(1), 75–84. https://doi.org/10.1016/j.ijepes.2018.03.013
  • Miao Y., Yafang T., Yixin H., Junwei L., Guolong M., 2020. Research on the influence of double-fed fan control mode on relay protection. Power Syst Protect Control, 48(02), 180–187, https://doi.org/10.1016/j.ijepes.2023.109009
  • Mishra, S., Gupta, S., & Yadav, A., 2020. Study on factors affecting distance protection scheme of UPFC compensated transmission lines. In 2020 First International Conference on Power, Control and Computing Technologies (ICPC2T) 143-148. https://doi.org/10.1109/ICPC2T48082.2020.9071515
  • Niaki, A. M., & Amiri, I. D., 2015. The impact of shunt-FACTS devices on distance relay performance. In 2015 2nd International Conference on Knowledge-Based Engineering and Innovation (KBEI) 348-354. https://doi.org/10.1109/KBEI.2015.7436070
  • Oza, B. A., Nair, N. C., Mehta, R. P., & Makwana, V. H. 2010. Power system protection and switchgear. In Chapter-1, Introduction and Philosophy of a Protective Relaying System. Tata McGraw Hill Education Private Limited. Padiyar, K. R., 2007. FACTS controllers in power transmission and distribution. K. R. Padiyar, Department of
  • Electrical Engineering Indian Institute of Science, Bangalore-560 012, India Padiyar, K. R., & Prabhu, N., 2003. Analysis of subsynchronous resonance with three level twelve-pulse VSC based SS. In TENCON 2003. Conference on Convergent Technologies for Asia-Pacific Region 76-80. https://doi.org/10.1109/TENCON.2003.1273229
  • Paz, M. C. R., Leborgne, R. C., & Bretas, A. S., 2015. Adaptive ground distance protection for UPFC compensated transmission lines: A formulation considering the fault resistance effect. International Journal of Electrical Power & Energy Systems, 7(3), 124-131. https://doi.org/10.1016/j.ijepes.2015.04.008
  • Purohit, A., & Gohokar, V., 2019. Maloperation of distance relay under faulty conditions in presence of static synchronous series compensator. In 2019 IEEE 2nd International Conference on Power and Energy Applications (ICPEA), 66-70. https://doi.org/10.1109/ICPEA.2019.8818520
  • Rao, H. G., Prabhu, N., & Mala, R. C., 2015. Investigations on stability of a hybrid series compensated system with SS. In 2015 International Conference on Technological Advancements in Power and Energy (TAP Energy), 57-64. https://doi.org/10.1109/TAPENERGY.2015.7229593
  • Rao, H. G., Prabhu, N., & Mala, R. C., 2019. Emulated reactance and resistance by a SS incorporating energy storage device. International Journal of Electrical and Computer Engineering, 9(2), 8-40. https://doi.org/10.11591/ijece.v9i2.pp840-850
  • Rao, M. V., Sivanagaraju, S., & Suresh, C. V., 2016. Available transfer capability evaluation and enhancement using various FACTS controllers: Special focus on system security. Ain Shams Engineering Journal, 7(1), 191-207. https://doi.org/10.1016/j.asej.2015.11.006
  • Sidhu, T. S., Varma, R. K., Gangadharan, P. K., Albasri, F. A., & Ortiz, G. R., 2005. Performance of distance relays on shunt-FACTS compensated transmission lines. IEEE Transactions on Power delivery, 20(3), 1837-1845. https://doi.org/10.1109/TPWRD.2005.848641
  • Singh, M., Panigrahi, B. K., & Maheshwari, R. P., 2011. Transmission line fault detection and classification. In 2011 International Conference on Emerging Trends in Electrical and Computer Technology 15-22. https://doi.org/10.1109/ICETECT.2011.5760084
  • Stella, M., Ezra, M. A., Fathima, A. P., & Jiunn, C. K., 2016. Research on the efficacy of unified Statcom-Fuel cells in improving the transient stability of power systems. International Journal of Hydrogen Energy, 41(3), 1944-1957. https://doi.org/10.1016/j.ijhydene.2015.11.130
  • Tur, M. R. 2020. Reliability assessment of distribution power system when considering energy storage configuration technique. IEEE Access, 8(1), 77962-77971. https://doi.org/10.1109/ACCESS.2020.2990345 Zhang, I., Crow, M. L., Yang, Z., & Chen, S., 2001. The steady state characteristics of an SSSC integrated with energy storage. In 2001 IEEE Power Engineering Society Winter Meeting. Conference Proceedings (Cat. No. 01CH37194), 1311-1316. https://doi.org/10.1109/PESW.2001.917271
  • Chenghan, Z. H. O. U., Guibin, Z. O. U., Lindong, Z. A. N. G., Xuhui, W. E. N., Liangzhi, S. U. N., & Xiaogong, D. U., 2021. Novel differential protection for distribution network with inverter-interfaced distributed generations. In 2021 6th Asia Conference on Power and Electrical Engineering (ACPEE), 19-23. https://doi.org/10.1109/ACPEE51499.2021.9436957
Toplam 36 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Enerji Sistemleri Mühendisliği (Diğer)
Bölüm Makaleler
Yazarlar

Medine İzgi 0009-0003-9165-9467

Mehmet Rıda Tür 0000-0001-5688-4624

Erken Görünüm Tarihi 11 Kasım 2024
Yayımlanma Tarihi 2 Aralık 2024
Gönderilme Tarihi 17 Nisan 2024
Kabul Tarihi 16 Ağustos 2024
Yayımlandığı Sayı Yıl 2024

Kaynak Göster

APA İzgi, M., & Tür, M. R. (2024). Enerji Depolama Sistemini İçeren İletim Hattı için Uyarlanabilir Mesafe Koruması Röle Tasarımı. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi, 24(6), 1412-1420. https://doi.org/10.35414/akufemubid.1470014
AMA İzgi M, Tür MR. Enerji Depolama Sistemini İçeren İletim Hattı için Uyarlanabilir Mesafe Koruması Röle Tasarımı. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi. Aralık 2024;24(6):1412-1420. doi:10.35414/akufemubid.1470014
Chicago İzgi, Medine, ve Mehmet Rıda Tür. “Enerji Depolama Sistemini İçeren İletim Hattı için Uyarlanabilir Mesafe Koruması Röle Tasarımı”. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi 24, sy. 6 (Aralık 2024): 1412-20. https://doi.org/10.35414/akufemubid.1470014.
EndNote İzgi M, Tür MR (01 Aralık 2024) Enerji Depolama Sistemini İçeren İletim Hattı için Uyarlanabilir Mesafe Koruması Röle Tasarımı. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi 24 6 1412–1420.
IEEE M. İzgi ve M. R. Tür, “Enerji Depolama Sistemini İçeren İletim Hattı için Uyarlanabilir Mesafe Koruması Röle Tasarımı”, Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi, c. 24, sy. 6, ss. 1412–1420, 2024, doi: 10.35414/akufemubid.1470014.
ISNAD İzgi, Medine - Tür, Mehmet Rıda. “Enerji Depolama Sistemini İçeren İletim Hattı için Uyarlanabilir Mesafe Koruması Röle Tasarımı”. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi 24/6 (Aralık 2024), 1412-1420. https://doi.org/10.35414/akufemubid.1470014.
JAMA İzgi M, Tür MR. Enerji Depolama Sistemini İçeren İletim Hattı için Uyarlanabilir Mesafe Koruması Röle Tasarımı. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi. 2024;24:1412–1420.
MLA İzgi, Medine ve Mehmet Rıda Tür. “Enerji Depolama Sistemini İçeren İletim Hattı için Uyarlanabilir Mesafe Koruması Röle Tasarımı”. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi, c. 24, sy. 6, 2024, ss. 1412-20, doi:10.35414/akufemubid.1470014.
Vancouver İzgi M, Tür MR. Enerji Depolama Sistemini İçeren İletim Hattı için Uyarlanabilir Mesafe Koruması Röle Tasarımı. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi. 2024;24(6):1412-20.


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