Title :
Fault resilient high efficiency stacked resonant converters for multi-terminal DC architectures
Author :
Gupta, R.K. ; Agamy, M.S. ; Dame, M.E. ; Dai, J. ; Li, X. ; Cioffi, P.M. ; Sellick, R.L.
Author_Institution :
First Solar, New York, NY, USA
Abstract :
Next-generation medium and high voltage DC grids are expected to comprise multiple terminals that include generation, loads and interconnections to other networks. DC faults pose a significant challenge to the implementation of multi-terminal DC networks as high voltage DC breakers are complicated in design and will add a large cost and volume to the DC converter station. In this paper, a medium and/or high voltage converter station design is presented based on stacked high frequency isolated resonant based converters. Such converters provide high power density, high efficiency and above all ultra-fast fault isolation capability. Basic design concepts of the converters and experimental verification of the converter operation and fault isolation are presented.
Keywords :
HVDC power transmission; power transmission faults; resonant power convertors; fault resilient high efficiency stacked resonant converters; high voltage converter station design; medium voltage converter station design; multiterminal DC architectures; stacked high frequency isolated resonant based converters; ultra-fast fault isolation capability; DC transformer; HVDC/MVDC grid; fault isolation; high frequency transformer;
Conference_Titel :
AC and DC Power Transmission, 11th IET International Conference on
Conference_Location :
Birmingham
Print_ISBN :
978-1-84919-982-7
DOI :
10.1049/cp.2015.0079