Studi Pemutus Arus Searah Berbasis Hybrid untuk Transmisi Arus Searah

Authors

  • Zulfiana Safitri Majid Politeknik Negeri Ujung Pandang

DOI:

https://doi.org/10.31004/koloni.v2i1.525

Abstract

In improving the electrical transmission system, a stable and reliable integration system is needed. Based on research, direct current transmission systems are believed to be more efficient in distributing electrical energy, especially over long distances between power plant and electricity consumers. When direct current transmission is applied, the direct current breaker system will also be more crucial. For this reason, in this research, a more in-depth study was carried out regarding a hybrid-based direct current breaker system which can cut off the fault current very quickly for about 250µs and reduce commutation losses from semiconductor components.

Keywords: DC Hybrid Circuit Breaker, High Voltage Direct Current, Integration

 

References

Callavik, M., Blomberg, A., Häfner, J., & Jacobson, B. (2012). The hybrid HVDC breaker. ABB Grid Systems Technical Paper, 361, 143-152.

Eicher, S., Rahimo, M., Tsyplakov, E., Schneider, D., Kopta, A., Schlapbach, U., & Carroll, E. (2004). 4.5 kV press pack IGBT designed for ruggedness and reliability. Paper presented at the Conference Record of the 2004 IEEE Industry Applications Conference, 2004. 39th IAS Annual Meeting.

Franck, C. M. (2011). HVDC circuit breakers: A review identifying future research needs. IEEE Transactions on Power Delivery, 26(2), 998-1007.

Ginarsa, I., Nrartha, I., & Muljono, A. B. (2020). Transmisi Daya Tegangan Tinggi Arus Searah (TTAS) Keuntungan Desain Dan Interaksinya Dengan Sistem Arus Bolak-Balik (AB).

Magnusson, J., Hammar, O., & Engdahl, G. (2010). Modelling and experimental assessment of thomson coil actuator systems for ultra fast mechanical switches for commutation of load currents. Paper presented at the 12th International Conference on New Actuators/6th International Exhibition on Smart Actuators and Drive Systems, Bremen, GERMANY, JUN 14-16, 2010.

Meyer, J.-M., & Rufer, A. (2006). A DC hybrid circuit breaker with ultra-fast contact opening and integrated gate-commutated thyristors (IGCTs). IEEE Transactions on Power Delivery, 21(2), 646-651.

NST, M. A. M., Hermawan, H., & Denis, D. (2020). RANCANG BANGUN MINIATUR SISTEM TRANSMISI DAYA ARUS SEARAH DENGAN RECTIFIER SATU FASA, BOOST CONVERTER DAN SISTEM MONITORING MENGGUNAKAN DATA LOGGER BERBASIS MIKROKONTROLER STM32F103C8T6. Transient: Jurnal Ilmiah Teknik Elektro, 9(2), 261-268.

Rahimo, M., Kopta, A., Schlapbach, U., Vobecky, J., Schnell, R., & Klaka, S. (2009). The Bi-mode Insulated Gate Transistor (BIGT) a potential technology for higher power applications. Paper presented at the 2009 21st International Symposium on Power Semiconductor Devices & IC's.

Sudarmanto, P. S. P. (2018). Analisis Perbandingan Efisiensi Sistem Kelistrikan Arus Bolak-Balik Dan Purwarupa Arus Searah Untuk Beban Residensial.

Trainer, D., Davidson, C., Oates, C., Macleod, N., Critchley, D., & Crookes, R. (2010). A new hybrid voltage-sourced converter for HVDC power transmission. Paper presented at the CIGRÉ session.

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Published

30-03-2023

How to Cite

Safitri Majid, Z. (2023). Studi Pemutus Arus Searah Berbasis Hybrid untuk Transmisi Arus Searah. KOLONI, 2(1), 405–414. https://doi.org/10.31004/koloni.v2i1.525

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