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Direct current fault protection = ba...
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Kizilyalli, Isik C.
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Direct current fault protection = basic concepts and technology advances /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Direct current fault protection/ edited by Isik C. Kizilyalli, Z. John Shen, Daniel W. Cunningham.
其他題名:
basic concepts and technology advances /
其他作者:
Kizilyalli, Isik C.
出版者:
Cham :Springer International Publishing : : 2023.,
面頁冊數:
1 online resource (xxv, 459 p.) :ill., digital ;24 cm.
內容註:
Introduction -- Overview of DC Fault Protection Technologies -- ABB's Recent Advances in Solid-state Circuit Breakers -- Eaton's Recent Advances in Solid-state Circuit Breakers -- iBreaker: Intelligent Multi-mode Solid-state Circuit Breaker Technology Using Wide Bandgap Semiconductor Switches -- T-type Modular DC Circuit Breaker (T-breaker) for Future DC Networks -- Resonant Solid-state Breakers Based on Wireless Coupling in MVDC Systems -- ABB's Recent Advances in Hybrid Circuit Breakers -- Hybrid Circuit Breaker With Transient Commutation Current Injection -- Efficient DC Interrupter With Surge Protection -- 500kv/25ka Hybrid Circuit Breaker Development -- Hybrid Circuit Breaker Based on MMC Topology -- Ultra Fast Resonant DC Breaker -- Inline Gas Discharge Tube Breaker for Meshed MVDC Grids -- Converter-based Breakerless Protection -- Fault Current Limiters and Their Applications -- Fundamental Challenges and Future Outlook.
Contained By:
Springer Nature eBook
標題:
Electric circuit-breakers. -
電子資源:
https://doi.org/10.1007/978-3-031-26572-3
ISBN:
9783031265723
Direct current fault protection = basic concepts and technology advances /
Direct current fault protection
basic concepts and technology advances /[electronic resource] :edited by Isik C. Kizilyalli, Z. John Shen, Daniel W. Cunningham. - Cham :Springer International Publishing :2023. - 1 online resource (xxv, 459 p.) :ill., digital ;24 cm. - Power systems,1860-4676. - Power systems..
Introduction -- Overview of DC Fault Protection Technologies -- ABB's Recent Advances in Solid-state Circuit Breakers -- Eaton's Recent Advances in Solid-state Circuit Breakers -- iBreaker: Intelligent Multi-mode Solid-state Circuit Breaker Technology Using Wide Bandgap Semiconductor Switches -- T-type Modular DC Circuit Breaker (T-breaker) for Future DC Networks -- Resonant Solid-state Breakers Based on Wireless Coupling in MVDC Systems -- ABB's Recent Advances in Hybrid Circuit Breakers -- Hybrid Circuit Breaker With Transient Commutation Current Injection -- Efficient DC Interrupter With Surge Protection -- 500kv/25ka Hybrid Circuit Breaker Development -- Hybrid Circuit Breaker Based on MMC Topology -- Ultra Fast Resonant DC Breaker -- Inline Gas Discharge Tube Breaker for Meshed MVDC Grids -- Converter-based Breakerless Protection -- Fault Current Limiters and Their Applications -- Fundamental Challenges and Future Outlook.
The lack of effective DC fault protection technology remains a major barrier for the DC paradigm shift. In addressing the key challenges, Direct Current Fault Protection: Basic Concepts and Technology Advances starts with an introduction to the advantages of DC power systems before moving on to an in-depth review of DC fault protection technologies, including mechanical circuit breaker (MCB), solid-state circuit breaker (SSCB), hybrid circuit breaker (HCB), converter based (breakerless) protection, and fault current limiter (FCL) Coverage includes a comprehensive comparison of various DC fault interruption technologies and their suitable applications, state-of-the-art DC fault protection concepts and advances in research, identification of fundamental challenges and future directions in the field, and commercialization aspects. This book will be a valuable reference for practicing engineers, researchers, and graduate students in the field of power electronics and DC power systems. Covers basic concepts and recent advances Offers insights on challenges and potential solutions Discusses relevance to adoption, operation, and efficiency of distributed renewable energy systems.
ISBN: 9783031265723
Standard No.: 10.1007/978-3-031-26572-3doiSubjects--Topical Terms:
3633952
Electric circuit-breakers.
LC Class. No.: TK2842
Dewey Class. No.: 621.317
Direct current fault protection = basic concepts and technology advances /
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Introduction -- Overview of DC Fault Protection Technologies -- ABB's Recent Advances in Solid-state Circuit Breakers -- Eaton's Recent Advances in Solid-state Circuit Breakers -- iBreaker: Intelligent Multi-mode Solid-state Circuit Breaker Technology Using Wide Bandgap Semiconductor Switches -- T-type Modular DC Circuit Breaker (T-breaker) for Future DC Networks -- Resonant Solid-state Breakers Based on Wireless Coupling in MVDC Systems -- ABB's Recent Advances in Hybrid Circuit Breakers -- Hybrid Circuit Breaker With Transient Commutation Current Injection -- Efficient DC Interrupter With Surge Protection -- 500kv/25ka Hybrid Circuit Breaker Development -- Hybrid Circuit Breaker Based on MMC Topology -- Ultra Fast Resonant DC Breaker -- Inline Gas Discharge Tube Breaker for Meshed MVDC Grids -- Converter-based Breakerless Protection -- Fault Current Limiters and Their Applications -- Fundamental Challenges and Future Outlook.
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The lack of effective DC fault protection technology remains a major barrier for the DC paradigm shift. In addressing the key challenges, Direct Current Fault Protection: Basic Concepts and Technology Advances starts with an introduction to the advantages of DC power systems before moving on to an in-depth review of DC fault protection technologies, including mechanical circuit breaker (MCB), solid-state circuit breaker (SSCB), hybrid circuit breaker (HCB), converter based (breakerless) protection, and fault current limiter (FCL) Coverage includes a comprehensive comparison of various DC fault interruption technologies and their suitable applications, state-of-the-art DC fault protection concepts and advances in research, identification of fundamental challenges and future directions in the field, and commercialization aspects. This book will be a valuable reference for practicing engineers, researchers, and graduate students in the field of power electronics and DC power systems. Covers basic concepts and recent advances Offers insights on challenges and potential solutions Discusses relevance to adoption, operation, and efficiency of distributed renewable energy systems.
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