DESIGN AND DEVELOPMENT OF A HYBRID DC CIRCUIT BREAKER TOPOLOGY WITH REGENERATIVE CURRENT BREAKING CAPABILITY
Recently, dealing with DC power has become significantly easier due to the stunning breakthrough of semiconductor technology and the continuous development of power electronics. The DC power system is getting immense attention in application areas such as DC Microgrid, HVDC Transmission, HVDC Grid,...
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2023
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oai:utpedia.utp.edu.my:246352023-06-30T03:13:58Z http://utpedia.utp.edu.my/id/eprint/24635/ DESIGN AND DEVELOPMENT OF A HYBRID DC CIRCUIT BREAKER TOPOLOGY WITH REGENERATIVE CURRENT BREAKING CAPABILITY LUMEN, S M SANZAD Instrumentation and Control Recently, dealing with DC power has become significantly easier due to the stunning breakthrough of semiconductor technology and the continuous development of power electronics. The DC power system is getting immense attention in application areas such as DC Microgrid, HVDC Transmission, HVDC Grid, Electric Traction, etc. Despite its numerous advantages, interruption of DC current poses significant challenges due to the lack of a natural zero crossing like AC current has. Furthermore, when current flows in a DC network, energy is stored in the network inductances, and this stored energy strongly opposes the current breaking. Therefore, for safe and efficient breaking of DC current, the stored energy of the network must be removed. A DC Circuit Breaker (DCCB) is the appropriate technology to break this current, and while doing so, it absorbs the energy and dissipates it as heat through snubber networks or nonlinear resistors. 2023-02 Thesis NonPeerReviewed text en http://utpedia.utp.edu.my/id/eprint/24635/1/S%20M%20Sanzad%20Lumen_18003309.pdf LUMEN, S M SANZAD (2023) DESIGN AND DEVELOPMENT OF A HYBRID DC CIRCUIT BREAKER TOPOLOGY WITH REGENERATIVE CURRENT BREAKING CAPABILITY. Masters thesis, UNSPECIFIED. |
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Instrumentation and Control LUMEN, S M SANZAD DESIGN AND DEVELOPMENT OF A HYBRID DC CIRCUIT BREAKER TOPOLOGY WITH REGENERATIVE CURRENT BREAKING CAPABILITY |
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Recently, dealing with DC power has become significantly easier due to the stunning breakthrough of semiconductor technology and the continuous development of power electronics. The DC power system is getting immense attention in application areas such as DC Microgrid, HVDC Transmission, HVDC Grid, Electric Traction, etc. Despite its numerous advantages, interruption of DC current poses significant challenges due to the lack of a natural zero crossing like AC current has. Furthermore, when current flows in a DC network, energy is stored in the network inductances, and this stored energy strongly opposes the current breaking. Therefore, for safe and efficient breaking of DC current, the stored energy of the network must be removed. A DC Circuit Breaker (DCCB) is the appropriate technology to break this current, and while doing so, it absorbs the energy and dissipates it as heat through snubber networks or nonlinear resistors. |
format |
Thesis |
author |
LUMEN, S M SANZAD |
author_facet |
LUMEN, S M SANZAD |
author_sort |
LUMEN, S M SANZAD |
title |
DESIGN AND DEVELOPMENT OF A HYBRID DC CIRCUIT BREAKER TOPOLOGY WITH REGENERATIVE CURRENT BREAKING CAPABILITY |
title_short |
DESIGN AND DEVELOPMENT OF A HYBRID DC CIRCUIT BREAKER TOPOLOGY WITH REGENERATIVE CURRENT BREAKING CAPABILITY |
title_full |
DESIGN AND DEVELOPMENT OF A HYBRID DC CIRCUIT BREAKER TOPOLOGY WITH REGENERATIVE CURRENT BREAKING CAPABILITY |
title_fullStr |
DESIGN AND DEVELOPMENT OF A HYBRID DC CIRCUIT BREAKER TOPOLOGY WITH REGENERATIVE CURRENT BREAKING CAPABILITY |
title_full_unstemmed |
DESIGN AND DEVELOPMENT OF A HYBRID DC CIRCUIT BREAKER TOPOLOGY WITH REGENERATIVE CURRENT BREAKING CAPABILITY |
title_sort |
design and development of a hybrid dc circuit breaker topology with regenerative current breaking capability |
publishDate |
2023 |
url |
http://utpedia.utp.edu.my/id/eprint/24635/1/S%20M%20Sanzad%20Lumen_18003309.pdf http://utpedia.utp.edu.my/id/eprint/24635/ |
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1770553574654214144 |
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13.222552 |